KR101897632B1 - Diarylfluorene amine derivative organic compounds and organic electroluminescent device including the same - Google Patents

Diarylfluorene amine derivative organic compounds and organic electroluminescent device including the same Download PDF

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KR101897632B1
KR101897632B1 KR1020170008015A KR20170008015A KR101897632B1 KR 101897632 B1 KR101897632 B1 KR 101897632B1 KR 1020170008015 A KR1020170008015 A KR 1020170008015A KR 20170008015 A KR20170008015 A KR 20170008015A KR 101897632 B1 KR101897632 B1 KR 101897632B1
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유한솔
김가영
백지은
안도환
민병우
오민영
임현철
이대균
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Abstract

하기 화학식 a로 표시되는 디아릴플루오렌 아민 유도체 유기화합물이 제공된다.
<화학식 a>

Figure 112017005607886-pat00027

상기 식에서, R1, R2, R3, R4, R5, R, n, Ar, X 및 L은 전술하여 정의된 바와 같다.There is provided a diarylfluoreneamine derivative organic compound represented by the following formula (a).
<Formula a>
Figure 112017005607886-pat00027

Wherein R 1 , R 2 , R 3 , R 4 , R 5 , R, n, Ar , X and L are as defined above.

Description

디아릴플루오렌 아민 유도체 유기화합물 및 이를 포함하는 유기 전계 발광 소자{DIARYLFLUORENE AMINE DERIVATIVE ORGANIC COMPOUNDS AND ORGANIC ELECTROLUMINESCENT DEVICE INCLUDING THE SAME}FIELD OF THE INVENTION [0001] The present invention relates to a diarylfluorene amine derivative organic compound and an organic electroluminescent device including the same. BACKGROUND ART &lt; RTI ID = 0.0 &gt;

디아릴플루오렌 아민 유도체 화합물 및 이를 포함하는 유기 전계 발광 소자에 관한 것이다.
Diarylfluoreneamine derivative compounds and organic electroluminescent devices comprising the same.

전계 발광 소자(electroluminescence device: EL device)는 자체 발광형 표시 소자로서 응답 속도가 빠르고, 시야각이 넓다는 장점을 가지고 있다. 1987년 이스트만 코닥(Eastman Kodak)사는 발광층 재료로서 저분자 방향족 디아민과 알루미늄 착물을 이용한 유기EL 소자를 처음으로 개발하였다[Appl. Phys. Lett. 51, 913, 1987].An electroluminescence device (EL device) is a self-emissive type display device having a high response speed and a wide viewing angle. In 1987, Eastman Kodak Company first developed an organic EL device using a low molecular aromatic diamine and an aluminum complex as a light emitting layer material [Appl. Phys. Lett. 51, 913, 1987].

유기 전계 발광 소자에서 발광 효율을 결정하는 가장 중요한 요인은 발광 재료인데, 발광 재료 중 인광 재료는 이론적으로 형광 재료 대비 4배까지 발광 효율을 개선시킬 수 있다. 현재까지 이리듐(III)착물 계열과 카바졸 계열의 재료들이 인광 발광 재료로 널리 알려져 있으며, 최근 새로운 인광 재료들이 연구되고 있다.The most important factor for determining the luminous efficiency in an organic electroluminescent device is a luminescent material. The phosphorescent material of the luminescent material can theoretically improve the luminous efficiency up to 4 times as compared with the fluorescent material. Until now, iridium (III) complexes and carbazole-based materials have been widely known as phosphorescent materials, and new phosphorescent materials are being studied in recent years.

유기 전계 발광 현상의 원리는, 음극과 양극 사이에 유기 박막층이 있을 때 두 전극 사이에 전압을 걸어주면 음극과 양극으로부터 각각 전자와 정공이 유기 박막층으로 주입된다. 유기 박막층으로 주입된 전자와 정공은 재결합하여 엑시톤 (exciton)을 형성하고, 이 엑시톤이 다시 바닥 상태로 떨어지면서 빛이 나게 된다. 이러한 원리를 이용하는 유기 전계 발광 소자는 일반적으로 음극과 양극 및 그 사이에 위치한 유기 박막층, 예컨대 정공주입층, 정공수송층, 발광층, 전자수송층을 포함하는 유기 박막층으로 구성될 수 있다.The principle of organic electroluminescent phenomenon is that when a voltage is applied between two electrodes when an organic thin film layer exists between a cathode and an anode, electrons and holes are injected into the organic thin film layer from the cathode and the anode, respectively. Electrons and holes injected into the organic thin film layer are recombined to form an exciton, and the exciton falls back to the ground state to emit light. An organic electroluminescent device using this principle can be generally constituted of an organic thin film layer including a cathode, an anode and an organic thin film layer disposed therebetween, for example, a hole injecting layer, a hole transporting layer, a light emitting layer, and an electron transporting layer.

유기 전계 발광 소자에서 사용되는 재료로는 순수 유기물 또는 유기물과 금속이 착물을 이루는 착화합물이 대부분을 차지하고 있으며, 용도에 따라 정공주입 재료, 정공수송 재료, 발광 재료, 전자수송 재료, 전자주입 재료 등으로 구분될 수 있다. 여기서, 정공주입 재료나 정공수송 재료로는 p-타입의 성질을 가지는 유기 재료, 즉 쉽게 산화가 되고 산화시에 전기화학적으로 안정한 상태를 가지는 유기물이 주로 사용되고 있다. 한편, 전자주입 재료나 전자수송 재료로는 n-타입 성질을 가지는 유기 재료, 즉 쉽게 환원이 되고 환원시에 전기화학적으로 안정한 상태를 가지는 유기물이 주로 사용되고 있다. 발광층 재료로는 p-타입 성질과 n-타입 성질을 동시에 가진 재료, 즉 산화와 환원 상태에서 모두 안정한 형태를 갖는 재료가 바람직하며, 엑시톤이 형성되었을 때 이를 빛으로 전환하는 발광 효율이 높은 재료가 바람직하다. 따라서, 당 기술 분야에서는 상기와 같은 요건을 갖춘 새로운 유기 재료의 개발이 요구되고 있다.
Most of materials used in organic electroluminescent devices are pure organic materials or complexes in which an organic material and a metal form a complex with each other. Depending on the application, a hole injecting material, a hole transporting material, a light emitting material, an electron transporting material, Can be distinguished. As the hole injecting material and the hole transporting material, an organic material having a p-type property, that is, an organic material which is easily oxidized and electrochemically stable at the time of oxidation, is mainly used. On the other hand, as an electron injecting material and an electron transporting material, an organic material having an n-type property, that is, an organic material which is easily reduced and electrochemically stable at the time of reduction is mainly used. As the light emitting layer material, a material having both a p-type property and an n-type property, that is, a material having both a stable state in oxidation and in a reduced state is preferable, and a material having a high luminous efficiency for converting an exciton into light desirable. Accordingly, there is a need in the art to develop new organic materials having the above-described requirements.

본 발명의 일 구현예는 적절한 에너지 준위, 전기화학적 안정성 및 열적 안정성을 가지는 신규한 디아릴플루오렌 아민 유도체 화합물을 제공한다.One embodiment of the present invention provides novel diarylfluoreneamine derivative compounds having appropriate energy levels, electrochemical stability, and thermal stability.

본 발명의 또 다른 구현예는 상기 디아릴플루오렌 아민 유도체 화합물을 포함하는 유기 전계 발광 소자를 제공한다.
Another embodiment of the present invention provides an organic electroluminescent device comprising the diarylfluorenamine derivative compound.

본 발명의 일 구현예에서, 하기 화학식 a로 표시되는 디아릴플루오렌 아민 유도체 화합물을 제공한다.In one embodiment of the present invention, there is provided a diarylfluoreneamine derivative compound represented by the following formula (a).

<화학식 a><Formula a>

Figure 112017005607886-pat00001
Figure 112017005607886-pat00001

상기 식에서, In this formula,

R1 내지 R5는, 각각 독립적으로, 수소, 중수소, 할로겐, C1~C12의 알콕시, 아미노, 니트릴, C2~C12의 아실, C3~C12의 실릴, 또는, 치환 또는 비치환된 C6~C60의 아릴기이고, 상기 R1 내지 R5는 서로 인접한 기와 연결되어 5원환 내지 6원환을 형성하면서 C5~C30의 축합고리를 형성할 수 있고, 상기 R1 내지 R5가 치환된 경우의 치환기는 C1~C30의 알킬기, C1~C12의 알콕시기 또는 C6~C30의 아릴기이고,R 1 to R 5 each independently represent hydrogen, deuterium, halogen, C 1 to C 12 alkoxy, amino, nitrile, C 2 to C 12 acyl, C 3 to C 12 silyl or substituted or unsubstituted C 6 to C 60 And R 1 to R 5 may form a condensed ring of C 5 to C 30 while forming a 5-membered to 6-membered ring, and the substituents when R 1 to R 5 are substituted may be C 1 to C 30 A C1 to C12 alkoxy group or a C6 to C30 aryl group,

n 은 서로 동일하거나 서로 상이한 0 내지 4의 정수이고,n is an integer of 0 to 4, which are the same as or different from each other,

L 은 단일결합이거나, 치환 또는 비치환된 C6~C60의 아릴렌 및 이들의 조합으로 이루어진 군으로부터 선택된 하나이고, 상기 L이 치환된 경우의 치환기는 C1~C12의 알킬기, C1~C12의 알콕시기 또는 C6~C30의 아릴기이고,L is a single bond, a substituted or unsubstituted C6-C60 arylene, or a combination thereof, and when L is substituted, the substituent may be a C1-C12 alkyl group, a C1-C12 alkoxy group Or a C6 to C30 aryl group,

X 는 O, S 또는 C(R)2 기이고, 상기 R은, 각각 독립적으로, C1~C6의 알킬 또는 C6~C60의 아릴기이고, 상기 두 개의 R은 서로 연결되어 스파이로 구조를 형성할 수 있고,X is an O, S or C (R) 2 group, each R is independently C1 to C6 alkyl or C6 to C60 aryl group, and the two Rs are connected to each other to form a spiro structure Can,

Ar 은 치환 또는 비치환된 C6-C60의 아릴기, 또는 치환 또는 비치환된 C3-C60의 헤테로아릴기이고, 상기 Ar 이 치환된 경우의 치환기는 C1-C30의 알킬기, C6-C30의 아릴기 또는 C5~C30의 헤테로 아릴기이다.
Ar is a substituted or unsubstituted C6-C60 aryl group, or a substituted or unsubstituted C3-C60 heteroaryl group, and when the Ar is substituted, the substituent is a C1-C30 alkyl group, a C6-C30 aryl group Or a C5-C30 heteroaryl group.

본 발명의 다른 구현예에서, 음극과 양극 사이에 적어도 하나의 유기 박막층이 협지되어 있는 유기 전계 발광 소자에 있어서, 상기 유기 박막층은 적어도 하나의 발광층을 포함하는 다층 구조이고, 상기 발광층 또는 상기 발광층 이외의 상기 유기 박막층 내의 적어도 하나의 층이 상기 디아릴플루오렌 아민 유도체 화합물을 단독 또는 2종 이상의 혼합물을 포함하는 유기 전계 발광 소자를 제공한다.
In another embodiment of the present invention, at least one organic thin film layer is sandwiched between a cathode and an anode, wherein the organic thin film layer has a multilayer structure including at least one light emitting layer, and the light emitting layer or the light emitting layer Wherein at least one layer in the organic thin film layer comprises the diarylfluorene amine derivative compound alone or a mixture of two or more thereof.

상기 디아릴플루오렌 아민 유도체 화합물은 유기 전계 발광 소자에서 사용 가능한 물질에 요구되는 조건, 예컨대 적절한 에너지 준위, 전기화학적 안정성 및 열적 안정성 등을 모두 우수하게 만족시킬 수 있으며, 치환기에 따라 유기 전계 발광 소자에서 요구되는 다양한 역할을 할 수 있다.
The diarylfluorene amine derivative compound can satisfactorily satisfy conditions required for a material usable in an organic electroluminescent device, for example, an appropriate energy level, an electrochemical stability, and a thermal stability, and the organic electroluminescent device Can play a variety of roles as required by &lt; RTI ID = 0.0 &gt;

도 1 은 화합물 6의 1H-NMR 측정 결과이다.
도 2 는 화합물 6의 DSC 측정 결과이다.
Fig. 1 shows the 1H-NMR measurement results of Compound 6. Fig.
2 shows the results of DSC measurement of Compound 6.

이하, 본 발명의 구현예를 상세히 설명하기로 한다. 다만, 이는 예시로서 제시되는 것으로, 이에 의해 본 발명이 제한되지는 않으며 본 발명은 후술할 청구항의 범주에 의해 정의될 뿐이다. Hereinafter, embodiments of the present invention will be described in detail. However, the present invention is not limited thereto, and the present invention is only defined by the scope of the following claims.

본 명세서에서 "치환"된 경우는 별도의 정의가 없는 한, C1-C50의 알킬기, C3-C50의 시클로알킬기, C2-C50의 알케닐기, C3-C50의 시클로알케닐기, C2-C50의 알키닐기, C5-C50의 시클로알키닐기, 시아노기, C1-C20의 알콕시기, C3-C50의 알킬실릴기, C6-C60의 아릴기 및 C7-C60의 아릴알킬기 및 이들의 조합으로 이루어진 군에서 선택된 치환기로 치환된 경우를 포함한다.Unless defined otherwise, the term "substituted" in the present specification means a C1-C50 alkyl group, a C3-C50 cycloalkyl group, a C2-C50 alkenyl group, a C3-C50 cycloalkenyl group, a C2-C50 alkynyl group , A C5-C50 cycloalkynyl group, a cyano group, a C1-C20 alkoxy group, a C3-C50 alkylsilyl group, a C6-C60 aryl group and a C7-C60 arylalkyl group, . &Lt; / RTI &gt;

본 명세서에서 "이들의 조합"이란 별도의 정의가 없는 한, 둘 이상의 치환기가 연결기로 결합되어 있거나, 둘 이상의 치환기가 축합하여 결합되어 있는 것을 의미한다. In the present specification, the term "combination thereof" means that two or more substituents are bonded to each other via a linking group or two or more substituents are condensed and bonded.

본 명세서에서 "헤테로"란 별도의 정의가 없는 한, 하나의 화합물 또는 치환기 내에 헤테로 원자를 포함함을 의미하고, 상기 헤테로 원자는 N, O, S, P 및 이들의 조합으로 이루어진 군에서 선택된 하나일 수 있다. 예를 들어, 상기 하나의 화합물 또는 치환기 내에 헤테로 원자를 1 내지 3 포함하고, 나머지는 탄소인 경우를 의미할 수 있다.
"Hetero" as used herein, unless otherwise defined, means containing a heteroatom in one compound or substituent, wherein the heteroatom is selected from the group consisting of N, O, S, P, Lt; / RTI &gt; For example, it may mean one to three heteroatoms in the one compound or substituent, and the remainder is carbon.

본 발명의 일 구현예에서, 신규한 하기 화학식 a로 표시되는 디아릴플루오렌 아민 유도체 화합물을 제공한다.In one embodiment of the present invention, there is provided a novel diarylfluorenamine derivative compound represented by the following formula (a).

<화학식 a><Formula a>

Figure 112017005607886-pat00002
Figure 112017005607886-pat00002

R1 내지 R5는, 각각 독립적으로, 수소, 중수소, 할로겐, C1~C12의 알콕시, 아미노, 니트릴, C2~C12의 아실, C3~C12의 실릴, 또는, 치환 또는 비치환된 C6~C60의 아릴기이고, 상기 R1 내지 R5는 서로 인접한 기와 연결되어 5원환 내지 6원환을 형성하면서 C5~C30의 축합고리를 형성할 수 있고, 상기 R1 내지 R5가 치환된 경우의 치환기는 C1~C30의 알킬기, C1~C12의 알콕시기 또는 C6~C30의 아릴기이고,R 1 to R 5 each independently represent hydrogen, deuterium, halogen, C 1 to C 12 alkoxy, amino, nitrile, C 2 to C 12 acyl, C 3 to C 12 silyl or substituted or unsubstituted C 6 to C 60 And R 1 to R 5 may form a condensed ring of C 5 to C 30 while forming a 5-membered to 6-membered ring, and the substituents when R 1 to R 5 are substituted may be C 1 to C 30 A C1 to C12 alkoxy group or a C6 to C30 aryl group,

n 은 서로 동일하거나 서로 상이한 0 내지 4의 정수이고,n is an integer of 0 to 4, which are the same as or different from each other,

L 은 단일결합이거나, 치환 또는 비치환된 C6~C60의 아릴렌 및 이들의 조합으로 이루어진 군으로부터 선택된 하나이고, 상기 L이 치환된 경우의 치환기는 C1~C12의 알킬기, C1~C12의 알콕시기 또는 C6~C30의 아릴기이고,L is a single bond, a substituted or unsubstituted C6-C60 arylene, or a combination thereof, and when L is substituted, the substituent may be a C1-C12 alkyl group, a C1-C12 alkoxy group Or a C6 to C30 aryl group,

X 는 O, S 또는 C(R)2 기이고, 상기 R은, 각각 독립적으로, C1~C6의 알킬 또는 C6~C60의 아릴기이고, 상기 두 개의 R은 서로 연결되어 스파이로 구조를 형성할 수 있고,X is an O, S or C (R) 2 group, each R is independently C1 to C6 alkyl or C6 to C60 aryl group, and the two Rs are connected to each other to form a spiro structure Can,

Ar 은 치환 또는 비치환된 C6-C60의 아릴기, 또는 치환 또는 비치환된 C3-C60의 헤테로아릴기이고, 상기 Ar 이 치환된 경우의 치환기는 C1-C30의 알킬기, C6-C30의 아릴기 또는 C5~C30의 헤테로 아릴기이다.
Ar is a substituted or unsubstituted C6-C60 aryl group, or a substituted or unsubstituted C3-C60 heteroaryl group, and when the Ar is substituted, the substituent is a C1-C30 alkyl group, a C6-C30 aryl group Or a C5-C30 heteroaryl group.

구체적으로, 치환 또는 비치환된 페닐렌기, 치환 또는 비치환된 비페닐렌기, 치환 또는 비치환된 나프탈렌기 또는 치환 또는 비치환된 플루오렌기이고, 상기 L이 치환된 경우의 치환기는 C1-C12의 알킬기, C1-C12의 알콕시기 또는 C6-C30의 아릴기이다.Specifically, a substituted or unsubstituted phenylene group, a substituted or unsubstituted biphenylene group, a substituted or unsubstituted naphthalene group or a substituted or unsubstituted fluorene group, and when L is substituted, the substituent is C1-C12 An alkyl group of C1-C12, an alkoxy group of C1-C12 or an aryl group of C6-C30.

더욱 구체적으로, Ar은 페닐기, 중수소페닐기, 나프틸기, 비페닐기, 페난트렌기, 플루오렌기, 스파이로플루오렌기, 벤조티오펜기, 벤조퓨란기, 디벤조퓨란기, 디벤조티오펜기, 나프토벤조퓨란기, 터페닐기, 카바졸기 또는 트리페닐렌기일 수 있다.
More specifically, Ar represents a phenyl group, a heptylphenyl group, a naphthyl group, a biphenyl group, a phenanthrene group, a fluorene group, a spirobifluorene group, a benzothiophene group, a benzofuran group, a dibenzofurane group, , A naphthobenzofuran group, a terphenyl group, a carbazole group or a triphenylene group.

구체적으로, 상기 L 이 페닐렌기인 경우 치환 위치는 1,4 치환 이거나 1,2 치환일 수 있다.
Specifically, when L is a phenylene group, the substitution position may be 1,4-substituted or 1,2-substituted.

일 구현예에서, 상기 화학식 a는 하기 화학식 b 내지 화학식 c로 표시될 수 있다.In one embodiment, the formula (a) may be represented by the following formulas (b) to (c).

<화학식 b><Formula b>

Figure 112017005607886-pat00003
Figure 112017005607886-pat00003

<화학식 c><Formula c>

Figure 112017005607886-pat00004

Figure 112017005607886-pat00004

상기 화학식 b 또는 c 에서,In the above formula (b) or (c)

R1, R2, R3, R4, R5, R, n, Ar, X, L는, 상기 화학식 a 에서 정의된 바와 같다.
R 1, R 2, R 3, R 4, R 5, R 6, n, Ar , X and L are as defined in Formula a above.

예를 들어, 상기 디아릴플루오렌 아민 유도체 화합물은 하기 표 1에 기재된 1 내지 113 중의 어느 하나의 화합물일 수 있다.
For example, the diarylfluoreneamine derivative compound may be any one of compounds 1 to 113 described in Table 1 below.

Figure 112017005607886-pat00005
Figure 112017005607886-pat00005

Figure 112017005607886-pat00006
Figure 112017005607886-pat00006

Figure 112017005607886-pat00007
Figure 112017005607886-pat00007

Figure 112017005607886-pat00008
Figure 112017005607886-pat00008

Figure 112017005607886-pat00009

Figure 112017005607886-pat00009

상기 디아릴플루오렌 아민 유도체 화합물은 유기 전계 발광 소자용 재료로 사용되는 경우, 유기 전계 발광 소자에서 사용 가능한 물질에 요구되는 조건, 예컨대 적절한 에너지 준위, 전기화학적 안정성 및 열적 안정성 등을 모두 우수하게 만족시킬 수 있으며, 치환기에 따라 유기 전계 발광 소자에서 요구되는 다양한 역할을 할 수 있다.
When the diarylfluorene amine derivative compound is used as a material for an organic electroluminescent device, it is preferable that the diarylfluorene amine derivative compound satisfies conditions required for a material usable in an organic electroluminescent device, such as appropriate energy level, electrochemical stability and thermal stability Depending on the substituent, it can play various roles required in the organic electroluminescent device.

본 발명의 또 다른 구현예에서, 음극과 양극 사이에 적어도 하나의 유기 박막층이 협지되어 있는 유기 전계 발광 소자에 있어서, 상기 유기 박막층은 적어도 하나의 발광층을 포함하는 다층 구조이고, 상기 발광층 또는 상기 발광층 이외의 상기 유기 박막층 내의 적어도 하나의 층이 상기 디아릴플루오렌 아민 유도체 화합물을 단독 또는 2종 이상의 혼합물을 포함하는 유기 전계 발광 소자를 제공한다.In another embodiment of the present invention, at least one organic thin film layer is sandwiched between a cathode and an anode, wherein the organic thin film layer has a multilayer structure including at least one light emitting layer, and the light emitting layer or the light emitting layer At least one layer in the organic thin film layer contains the diarylfluorene amine derivative compound alone or a mixture of two or more thereof.

상기 유기 전계 발광 소자의 유기 박막층에 포함되는 상기 디아릴플루오렌 아민 유도체 화합물은 상기 화학식 a로 표시되는 화합물이고, 그에 대한 상세한 설명은 전술한 바와 같다.The diarylfluorene amine derivative compound contained in the organic thin film layer of the organic electroluminescent device is a compound represented by the above formula (a), and a detailed description thereof is as described above.

일 구현예에서, 상기 유기 박막층은 필요한 용도에 따라서 적절히 정공수송층, 정공주입층, 정공차단층, 전자수송층, 전자주입층 및 전자차단층으로 이루어진 군으로부터 선택된 하나 이상을 포함할 수 있다.In one embodiment, the organic thin film layer may suitably include at least one selected from the group consisting of a hole transporting layer, a hole injecting layer, a hole blocking layer, an electron transporting layer, an electron injecting layer and an electron blocking layer.

다른 구현예에서, 상기 유기 박막층은 양극과 발광층 사이에 개재되며, 정공주입층, 정공수송층, 정공주입 기능 및 정공수송 기능을 동시에 갖는 기능층, 버퍼층 및 전자차단층 중 적어도 하나를 포함한 정공 수송 영역을 포함할 수 있다.In another embodiment, the organic thin film layer is disposed between the anode and the light emitting layer and includes a hole transporting layer, a hole transporting layer, a hole transporting region including at least one of a functional layer having both a hole injecting function and a hole transporting function, . &Lt; / RTI &gt;

상기 정공 수송 영역은 p-도펀트를 더 포함할 수 있다. The hole transporting region may further include a p-dopant.

상기 정공주입층, 정공수송층, 기능층, 버퍼층, 전자차단층, 발광층 정공차단층 전자수송층, 전자주입층 등은, 각각, 공지된 물질을 사용하여 형성되거나, 상기 화학식 a로 표시되는 디아릴플루오렌 아민 유도체 화합물을 1종 이상 포함할 수 있다.
The hole injection layer, the hole transport layer, the functional layer, the buffer layer, the electron blocking layer, the hole blocking layer of the light emitting layer, and the electron injection layer may be formed using known materials, And one or more kinds of an organic amine derivative compound.

상기 유기 박막층에 관한 상세한 설명은 전술한 바와 같다.
A detailed description of the organic thin film layer is as described above.

이하 본 발명의 실시예 및 비교예를 기재한다. 그러한 하기한 실시예는 본 발명의 일 실시예일뿐 본 발명이 하기한 실시예에 한정되는 것은 아니다.
Hereinafter, examples and comparative examples of the present invention will be described. The following embodiments are only examples of the present invention, and the present invention is not limited to the following embodiments.

(( 실시예Example ))

이하에서, 반응예 및 비교예를 구체적으로 예시하지만, 본 발명이 하기의 반응예 및 실시예로 한정되는 것은 아니다. 이하의 반응예에서 중간체 화합물은 최종 생성물의 번호에 일련번호를 추가하는 방식으로 표기한다. 예를 들어, 화합물 1은 화합물 [1] 로 상기 화합물의 중간체 화합물은 [1-1] 등으로 표기한다. 본 명세서에서 화합물의 번호는 상기 표 1에 기재된 화학식의 번호로서 표기한다. 예를 들어, 표 1에서 1로 표시된 화합물은 화합물 1로 표기한다.
Hereinafter, the reaction examples and the comparative examples are specifically exemplified, but the present invention is not limited to the following reaction examples and examples. In the following reaction examples, the intermediate compounds are indicated by adding the serial number to the final product number. For example, Compound 1 is represented by the compound [1], and the intermediate compound of the above compound is represented by [1-1] or the like. In the present specification, the numbers of the compounds are represented by the numbers of the formulas shown in Table 1 above. For example, compounds designated 1 in Table 1 are designated Compound 1.

[반응식 1][Reaction Scheme 1]

Figure 112017005607886-pat00010

Figure 112017005607886-pat00010

중간체 화합물 [6-1]의 제조Preparation of intermediate compound [6-1]

질소분위기하에 2L 반응플라스크에 1-브로모-3,5-디페닐 65g (210.22mmol), 비스(피나콜라토)디보론 64.1g (252.26mmol), 포타슘아세테이트 61.9g (630.66mmol), (1,1'-비스(디페닐포스피노)페로센) 팔라듐(Ⅱ) 디클로라이드 7.7g (10.51mmol) 그리고 1,4-디옥산 650ml를 가하고 온도를 올려준다. 3시간 환류 반응 후 반응액을 celite로 여과하고 디클로로메탄, 증류수로 추출한 다음 유기층은 무수황산 마그네슘 처리 후 감압 농축한다. 실리카겔 크로마토그라프로 분리정제 후, 디클로메탄과 메탄올로 재결정하여 흰색 고체 중간체 화합물 [6-1] 68.3g (91%)을 제조하였다.
To a 2 L reaction flask under nitrogen was added 65 g (210.22 mmol) of 1-bromo-3,5-diphenyl, 64.1 g (252.26 mmol) of bis (pinacolato) diboron, 61.9 g (630.66 mmol) 7.7 g (10.51 mmol) of palladium (II) dichloride, 650 ml of 1,4-dioxane, and the temperature is raised. After refluxing for 3 hours, the reaction mixture is filtered through celite and extracted with dichloromethane and distilled water. The organic layer is treated with anhydrous magnesium sulfate and concentrated under reduced pressure. The product was purified by silica gel chromatography and then recrystallized from dichloromethane and methanol to obtain 68.3 g (91%) of a white solid intermediate compound [6-1] .

중간체 화합물 [6-2]의 제조Preparation of intermediate compound [6-2]

질소분위기에서 2L 반응플라스크에 1-(2-브로모-5-메폭시페닐)에타논 41.6g (181.77mmol), 화합물 [6-1] 68g (190.86mmol) 그리고 1,4-다이옥산 410ml를 투입하고 온도를 올려준다. 60℃에서 테트라키스(트리페닐포스핀)팔라듐(0) 4.2g (3.64mmol)과 증류수에 녹인 포타슘카보네이트 75.4g (545.33mmol)을 넣어준 후 밤샘 환류 교반한다. 반응이 종료되면 실온까지 냉각한 다음 에틸아세테이트, 증류수로 추출하고, 유기층은 무수황산 마그네슘 처리 후 여과한다. 여과액은 감압 농축하고, 실리카겔 크로마토그라프로 분리정제하여, 투명한 오일 상태의 중간체 화합물 [6-2] 64.7g (94%)을 제조하였다.
In a nitrogen atmosphere, 41.6 g (181.77 mmol) of 1- (2-bromo-5-methoxyphenyl) ethanone, 68 g (190.86 mmol) of the compound [6-1] and 410 ml of 1,4- And raise the temperature. 4.24 g (3.64 mmol) of tetrakis (triphenylphosphine) palladium (0) and 75.4 g (545.33 mmol) of potassium carbonate dissolved in distilled water were added at 60 ° C, followed by stirring at reflux overnight. When the reaction is completed, the reaction mixture is cooled to room temperature, and extracted with ethyl acetate and distilled water. The organic layer is treated with anhydrous magnesium sulfate and filtered. The filtrate was concentrated under reduced pressure and purified by silica gel chromatography to obtain 64.7 g (94%) of intermediate compound [6-2] in a clear oil state.

중간체 화합물 [6-3]의 제조Preparation of intermediate compound [6-3]

질소분위기하에 2L 반응플라스크에 화합물 [6-2] 64.7g (170.86mmol)과 테트라하이드로퓨란 650ml을 투입하고, 0℃에서 메틸마그네슘클로라이드(3.0M in THF) 256ml (768.88mmol)를 천천히 적가하고 상온에서 밤샘 교반한다. 반응 종료 후 증류수 1.5L에 반응물을 천천히 적가한다. 에탈아세테이트, 증류수로 추출하여 유기층을 얻고 무수황산 마그네슘 처리 후 감압 농축한다. 실리카겔 크로마토그라프로 분리 정제하여 흰색 고체의 중간체 화합물 [6-3] 53.9g (80%)을 제조하였다.
64.7 g (170.86 mmol) of the compound [6-2] and 650 ml of tetrahydrofuran were placed in a 2 L reaction flask under a nitrogen atmosphere, and 256 ml (768.88 mmol) of methylmagnesium chloride (3.0 M in THF) Lt; / RTI &gt; After completion of the reaction, slowly drop the reaction mixture into 1.5 L of distilled water. The mixture is extracted with ethylacetate and distilled water to obtain an organic layer, which is treated with anhydrous magnesium sulfate and then concentrated under reduced pressure. The crude product was purified by silica gel chromatography to obtain 53.9 g (80%) of intermediate compound [6-3] as a white solid.

중간체 화합물 [6-4]의 제조Preparation of intermediate compound [6-4]

질소분위기하에 2L 반응플라스크에 화합물 [6-3] 53.9g (136.66mmol)과 디클로로메탄 540ml를 투입한다. 0℃에서 메탄설폰산 22.2ml (341.65mmol)을 천천히 적가하고 2시간 교반한다. 반응 종료 후 디클로로메탄, 염화나트륨 수용액으로 추출하여 유기층을 얻고 무수황산 마그네슘 처리 후 감압 농축한다. 실리카겔 크로마토그라프로 분리 정제하고, 톨루엔으로 재결정하여 흰색 고체의 중간체 화합물 [6-4] 42.2g (82%)을 제조하였다.
53.9 g (136.66 mmol) of the compound [6-3] and 540 ml of dichloromethane are introduced into a 2 L reaction flask under a nitrogen atmosphere. Methanesulfonic acid (22.2 ml, 341.65 mmol) was slowly added dropwise at 0 ° C and stirred for 2 hours. After completion of the reaction, the reaction mixture was extracted with dichloromethane and an aqueous solution of sodium chloride to obtain an organic layer, which was treated with anhydrous magnesium sulfate and then concentrated under reduced pressure. The residue was purified by silica gel chromatography and recrystallized with toluene to obtain 42.2 g (82%) of an intermediate compound [6-4] as a white solid.

중간체 화합물 [6-5]의 제조Preparation of intermediate compound [6-5]

질소분위기하에 1L 반응플라스크에 화합물 [6-4] 42g (111.55mmol)과 디클로로메탄 400ml을 투입한다. 0℃에서 보론 트리브로마이드 18.3ml (189.64mmol)을 천천히 적가하고 상온에서 2시간 교반 후 반응을 종결한다. 소듐비카보네이트 수용액에 반응물을 천천히 적가하고, 디클로로메탄, 증류수로 추출한다. 유기층은 무수황산 마그네슘 처리 후 여과하고 감압 농축한다. 디클로메탄과 헥산으로 재결정하여 미색 고체의 중간체 화합물 [6-5] 38g (94%)을 제조하였다.
42 g (111.55 mmol) of the compound [6-4] and 400 ml of dichloromethane are introduced into a 1 L reaction flask under a nitrogen atmosphere. 18.3 ml (189.64 mmol) of boron tribromide was slowly added dropwise at 0 ° C, stirred at room temperature for 2 hours, and the reaction was terminated. The reaction mixture is slowly added dropwise to an aqueous solution of sodium bicarbonate and extracted with dichloromethane and distilled water. The organic layer was treated with anhydrous magnesium sulfate, and then concentrated under reduced pressure. Recrystallization from dichloromethane and hexane gave 38 g (94%) of an off-white solid intermediate compound [6-5] .

중간체 화합물 [6-6]의 제조Preparation of intermediate compound [6-6]

질소분위기하에 1L 반응플라스크에 화합물 [6-5] 38g (104.86mmol)과 디클로로메탄 390ml를 투입한다. 0℃에서 피리딘 17.1ml (209.71mmol)을 천천히 적가 후 무수 트리플루오로메탄술폰 25.8ml (157.29mmol)을 천천히 적가한다. 상온에서 2시간 반응 후 증류수 300ml를 천천히 가하고 추출한다. 유기층은 무수황산 마그네슘 처리 후 silica 여과하고 감압 농축한다. 디클로메탄과 헥산으로 재결정하여 흰색 고체의 중간체 화합물 [6-6] 44g (85%)을 제조하였다.
38 g (104.86 mmol) of the compound [6-5] and 390 ml of dichloromethane are introduced into a 1 L reaction flask under a nitrogen atmosphere. 17.1 ml (209.71 mmol) of pyridine is slowly added dropwise at 0 ° C, and then 25.8 ml (157.29 mmol) of anhydrous trifluoromethanesulfone is slowly added dropwise. After reacting at room temperature for 2 hours, 300 ml of distilled water is slowly added and extracted. The organic layer is subjected to anhydrous magnesium sulfate treatment and silica filtration and concentration under reduced pressure. Recrystallization from dichloromethane and hexane gave 44 g (85%) of intermediate compound [6-6] as white solid.

화합물 [6]의 제조Preparation of compound [6]

질소분위기하에 1L 반응플라스크에 화합물 [6-6] 44g (88.98mmol), N-([1,1'-바이페닐]-4-일)-9,9-디메틸-9H-플루오렌-2-아민 30.6g (84.53mmol), 소듐터트부톡사이드 12.8g (133.46mmol), 트리스(디벤질리덴아세톤)디팔라듐(0) 2.4g (2.67mmol), 4,5-비스(디페닐포스피노)-9,9-디메틸잔텐 3.1g (5.34mmol), o-자일렌 440ml을 투입하고 3시간 환류 교반한다. 반응 종료 후 에틸아세테이트, 증류수로 추출 및 무수황산 마그네슘 처리 후 여과하고 감압 농축한다. 실리카겔 크로마토그라프로 분리 정제하고, 톨루엔으로 재결정하여 흰색 고체의 목적화합물 [6] 33.3g (53%)을 제조하였다.
(88.98 mmol) of compound [6-6], N - ([1,1'-biphenyl] -4- yl) -9,9- (Diphenylphosphino) - (2,2,2-trifluoroethyl) diphenylphosphonium chloride, 30.6g (84.53mmol) of amine, 12.8g (133.46mmol) of sodium tallow butoxide, 2.4g 3.1 g (5.34 mmol) of 9,9-dimethylzane and 440 ml of o-xylene were charged and refluxed and stirred for 3 hours. After completion of the reaction, the reaction mixture was extracted with ethyl acetate, distilled water, and anhydrous magnesium sulfate, followed by filtration and concentration under reduced pressure. The residue was purified by silica gel chromatography, and recrystallized from toluene to obtain 33.3 g (53%) of the target compound [6] as a white solid.

[반응식 2][Reaction Scheme 2]

Figure 112017005607886-pat00011

Figure 112017005607886-pat00011

중간체 화합물 [88-1]의 제조Preparation of intermediate compound [88-1]

질소분위기하에 2L 반응플라스크에 화합물 [6-6] 25g (50.55mmol), (4-클로로페닐)보론산 9.5g (60.66mmol), 1,4-다이옥산 250ml를 가하고 온도를 올려준다. 60℃에서 테트라키스(트리페닐포스핀)팔라듐(0) 1.2g (1.01mmol)을 넣고 증류수에 녹인 포타슘카보네이트 10.5g (75.83mmol)을 넣어준 후 5시간 환류 교반한다. 반응 종료 후 에틸아세테이트, 증류수로 추출, 무수황산 마그네슘 처리 후 감압 농축한다. 실리카겔 크로마토그라프 분리 정제하여 흰색 고체의 중간체 화합물 [88-1] 16.6g (72%)을 제조하였다.
25.5 g (50.55 mmol) of the compound [6-6], 9.5 g (60.66 mmol) of (4-chlorophenyl) boronic acid and 250 ml of 1,4-dioxane were added to a 2 L reaction flask under a nitrogen atmosphere. 1.2 g (1.01 mmol) of tetrakis (triphenylphosphine) palladium (0) was added at 60 ° C, 10.5 g (75.83 mmol) of potassium carbonate dissolved in distilled water was added, and the mixture was refluxed with stirring for 5 hours. After completion of the reaction, the reaction mixture was extracted with ethyl acetate and distilled water, treated with anhydrous magnesium sulfate, and then concentrated under reduced pressure. The silica gel chromatograph was separated and purified to obtain 16.6 g (72%) of intermediate compound [88-1] as a white solid.

화합물 [88]의 제조Preparation of compound [88]

화합물 [6]과 동일한 합성 방법으로 화합물 [88-1] 16.6g (36.40mmol), N-(9,9-디메틸-9H-플루오렌-2-일)디벤조[b,d]퓨란-4-아민 12.9g (34.57mmol), 소듐터트부톡사이드 5.2g (54.59mmol), 트리스(디벤질리덴아세톤)디팔라듐(0) 1.0g (1.09mmol), 4,5-비스(디페닐포스피노)-9,9-디메틸잔텐 1.3g (2.18mmol), o-자일렌 170ml을 사용하여 흰색 고체의 목적화합물 [88] 13.9g (48%)을 제조하였다.
(36.40 mmol) of the compound [88-1], N- (9,9-dimethyl-9H-fluoren-2-yl) dibenzo [b, (Dibenzylideneacetone) dipalladium (0), 1.0 g (1.09 mmol) of 4,5-bis (diphenylphosphino) -amine, 12.9 g (34.57 mmol) 13.9 g (48%) of the target compound [88] as a white solid were prepared by using 1.3 g (2.18 mmol) of 2,2-dimethyl-9,9-dimethylzantane and 170 ml of o-xylene.

[반응식 3][Reaction Scheme 3]

Figure 112017005607886-pat00012

Figure 112017005607886-pat00012

중간체 화합물 [108-1]의 제조Preparation of intermediate compound [108-1]

중간체 화합물 [6-2]와 동일한 합성 방법으로 1-(2-브로모-3-메톡시페닐)에타논 13.5g (58.94mmol), 화합물 [6-1] 20g (56.14mmol), 테트라키스(트리페닐포스핀)팔라듐(0) 1.4g (1.18mmol), 포타슘카보네이트 16.3g (117.88mmol), 1,4-다이옥산 200ml을 사용하여 투명한 오일 상태의 중간체 화합물 [108-1] 19.8g (89%)을 제조하였다.
(58.94 mmol) of 1- (2-bromo-3-methoxyphenyl) ethanone, 20 g (56.14 mmol) of compound [6-1], tetrakis (89% ) of Intermediate Compound [108-1] in a clear oil state was obtained by using 1.4 g (1.18 mmol) of triphenylphosphine palladium (0), 16.3 g (117.88 mmol) of potassium carbonate and 200 ml of 1,4- ).

중간체 화합물 [108-2]의 제조Preparation of intermediate compound [108-2]

상기 반응식 1과 동일한 합성 방법으로 화합물 [108-1] 19.8g (52.45mmol), 메틸마그네슘클로라이드(3.0M in THF) 78.7ml (236.05mmol), 메탄설폰산 7.8ml (119.60mmol), 보론 트리브로마이드 5.6ml (57.61mmol), 무수 트리플루오로메탄술폰 7.6ml (46.26mmol)을 사용하여 흰색 고체의 중간체 화합물 [108-2] 12.7g 을 제조하였다.
(52.45 mmol) of the compound [108-1], 78.7 ml (236.05 mmol) of methylmagnesium chloride (3.0 M in THF), 7.8 ml (119.60 mmol) of methanesulfonic acid, 12.7 g of an intermediate compound [108-2] as a white solid was prepared using 5.6 ml (57.61 mmol) of anhydrous trifluoromethanesulfone and 7.6 ml (46.26 mmol) of anhydrous trifluoromethanesulfone.

화합물 [108]의 제조Preparation of compound [108]

화합물 [6]과 동일한 합성 방법으로 화합물 [108-5] 12.7g (25.60mmol), N-(9,9-디메틸-9H-플루오렌-4-일)-9,9-디메틸-9H-플루오렌-2-아민 10.8g (26.88mmol), 소듐터트부톡사이드 3.7g (38.40mmol), 트리스(디벤질리덴아세톤)디팔라듐(0) 0.7g (0.77mmol), 4,5-비스(디페닐포스피노)-9,9-디메틸잔텐 0.9g (1.54mmol), o-자일렌 130ml을 사용하여 흰색 고체의 목적화합물 [108] 9.7g (51%)을 제조하였다.
12.7 g (25.60 mmol) of the compound [108-5], N- (9,9-dimethyl-9H-fluoren-4-yl) -9,9-dimethyl- (Dibenzylideneacetone) dipalladium (0), 0.7 g (0.77 mmol) of 4,5-bis (diphenyl) (51%) of the target compound [108] as a white solid were prepared by using 0.9 g (1.54 mmol) of o-xylene and 0.9 g of 2,2'-azobisisobutyronitrile.

상기 반응식 1 내지 3의 제조 방법에 따라 화합물 1 내지 화합물 113 및 비교예 화합물로서 하기 구조식의 화합물 114를 제조하였고 그 결과를 하기의 표 2에 나타내었다.
According to the production methods of the above Reaction Schemes 1 to 3, Compound 1 to Compound 113 and Compound 114 of the following structural formula were prepared as Comparative Examples and the results are shown in Table 2 below.

화합물 번호Compound No. 1H NMR (400 MHz, THF-d8): δ 1 H NMR (400 MHz, THF -d 8): δ MS/ MS /
Q-Q- TOFTOF (M+)(M +) &lt;
1One 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 9H), 7.31~7.28(t, 3H), 7.18(t, 1H), 7.10(t, 2H), 6.71~6.65(m, 3H), 6.53~6.48(m, 4H), 1.62(s, 12H)(T, 3H), 7.18 (t, 2H), 7.92 (d, 2H) 2H), 6.71-6.65 (m, 3H), 6.53-6.48 (m, 4H), 1.62 (s, 12H) 629629 22 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 9H), 7.31~7.28(t, 3H), 7.18(t, 1H), 6.65~6.61(s, 3H), 6.48(d, 2H), 6.26(s, 2H), 2.24(s, 6H), 1.62(s, 12H)(T, 3H), 7.18 (t, 2H), 7.92 (d, 2H) 2H), 2.24 (s, 6H), 1.62 (s, 12H), 6.65 (s, 657657 33 7.92(s, 1H), 7.77(d, 1H), 7.69(s, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45(d, 1H), 7.29~7.18(m, 6H), 7.10~7.09(m, 5H), 6.71~6.65(m, 3H), 6.53~6.48(d, 4H), 2.24(s, 6H), 1.62(s, 12H)2H), 7.45 (d, 1H), 7.29-7.18 (m, 6H), 7.92 (s, 6H), 1.62 (s, 12H), &lt; RTI ID = 0.0 &gt; 657657 44 7.92(s, 1H), 7.77~7.72(d, 9H), 7.62(s, 1H), 7.52(d, 2H), 7.45(d, 1H), 7.28(t, 1H), 7.18(t, 1H), 7.10(t, 2H), 6.71~6.65(m, 3H), 6.53~6.48(m, 4H), 1.62(s, 12H)2H), 7.48 (d, 1H), 7.28 (t, 1H), 7.18 (t, 1H) , 7.10 (t, 2H), 6.71-6.65 (m, 3H), 6.53-6.48 (m, 4H) 679679 55 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45(d, 1H), 7.29~7.10(m, 12H), 6.71~6.65(m, 3H), 6.53~6.48(m, 4H), 1.62(s, 12H)(D, 2H), 7.45 (d, 1H), 7.29-7.10 (m, 12H), 6.71-6.65 (m, 3H), 6.53 ~ 6.48 (m, 4H), 1.62 (s, 12H) 665665 66 8.06(d, 1H), 7.83(d, 1H), 7.76~7.58(m, 8H), 7.47~7.22(m, 19H), 7.13(m, 2H), 1.43(s, 6H), 1.30(s, 6H)2H), 1.43 (s, 6H), 1.30 (s, 2H), 8.06 (d, 1H), 7.83 (d, 6H) 705705 77 7.85~7.84(d, 1H), 7.62~7.61(d, 2H), 7.54~7.48(m, 2H), 7.39~7.22(m, 14H), 7.16~6.95(m, 12H), 1.22(s, 6H), 1.08(s, 6H)(M, 12H), 1.22 (s, 6H), 7.85-7.84 (m, 2H) ), 1.08 (s, 6 H) 705705 88 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 12H), 7.31~7.28(t, 4H), 7.18(t, 1H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.65(s, 2H), 6.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)2H), 7.48-7.41 (m, 12H), 7.31-7.28 (t, 4H), 7.18 (t, 1H), 7.06 (t, 1H), 6.98 (d, 2H), 6.77 (s, 2H), 6.65 ) 705705 99 7.92(s, 1H), 7.77(d, 1H), 7.69(s, 2H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 7H), 7.31~7.18(m, 7H), 7.09(d, 2H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 2.24(s, 6H), 1.62(s, 12H)2H), 7.52 (d, 2H), 7.45-7.41 (m, 7H), 7.31-7.18 (m, 6H), 1.62 (s, 12H), 7.09 (d, 2H) 733733 1010 7.92(s, 1H), 7.77(d, 1H), 7.67~7.62(m, 5H), 7.52(d, 2H), 7.45~7.28(m, 13H), 7.18(t, 1H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H), 0.15(s, 18H)2H), 7.45-7.28 (m, 13H), 7.18 (t, 1H), 6.65 (s, 1H) 2H), 6.59 (d, 2H), 6.48 (d, 2H), 1.62 850850 1111 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 19H), 7.18~7.15(m, 9H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)(M, 9H), 6.65 (s, 1H), 7.62 (s, 1H) 2H), 6.59 (d, 2H), 6.48 (d, 2H), 1.62 (s, 12H) 858858 1212 8.45(d, 2H), 8.32(d, 2H), 7.98~7.92(m, 5H), 7.77(d, 1H), 7.45(s, 1H), 7.52~7.41(m, 15H), 7.31~7.28(t, 2H), 7.18(t, 1H), 6.65~6.59(m, 4H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.45 (s, 1H), 7.52-7.41 (m, 15H), 7.31-7.28 (d, 2H), 8.45 t, 2H), 7.18 (t, IH), 6.65-6.59 (m, 4H) 806806 1313 7.92~7.90(m, 5H), 7.82~7.77(d, 3H), 7.63~7.62(m, 3H), 7.52~7.41(m, 15H), 7.31~7.28(t, 2H), 7.18(t, 1H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.18 (t, 1H), 7.92-7.90 (m, 5H), 7.82-7.77 (d, 3H), 7.63-7.62 ), 6.65 (s, 2H), 6.59 (d, 2H), 6.48 806806 1414 8.83(d, 4H), 8.02(d, 4H), 7.92(s, 1H), 7.83~7.72(m, 11H), 7.62(s, 1H), 7.52~7.41(m, 9H), 7.31~7.28(t, 2H), 7.18(t, 1H), 6.65~6.59(m, 4H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.62 (s, 1H), 7.52-7.41 (m, 9H), 7.31-7.28 (m, t, 2H), 7.18 (t, IH), 6.65-6.59 (m, 4H) 906906 1515 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 16H), 7.18~7.15(m, 9H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.65(s, 2H), 6.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)(M, 9H), 7.06 (t, 2H), 7.92 (s, 1H) 1H), 6.98 (d, 2H), 6.62 (s, 2H) 858858 1616 7.92~7.90(m, 5H), 7.82~7.77(d, 3H), 7.63~7.62(m, 3H), 7.52~7.41(m, 12H), 7.31~7.28(t, 2H), 7.18(t, 1H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.65(s, 2H), 7.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)2H), 7.18 (t, 1H), 7.92-7.90 (m, 5H), 7.82-7.75 (m, 3H) ), 7.06 (t, IH), 6.98 (d, 2H), 6.77 (t, IH), 6.65 (s, 2H), 7.59 (d, 806806 1717 8.83(d, 4H), 8.02(d, 4H), 7.92(s, 1H), 7.83~7.72(m, 11H), 7.62(s, 1H), 7.52~7.41(m, 6H), 7.31~7.28(t, 2H), 7.18(t, 1H), 7.06~6.98(m, 3H), 6.77(t, 1H), 6.65~6.59(m, 3H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.62 (s, 1H), 7.52-7.41 (m, 6H), 7.31-7.28 (m, (m, 3H), 6.65 (d, 2H), 7.18 (t, 1H) 906906 1818 8.45(d, 2H), 8.32(d, 2H), 7.98~7.92(m, 5H), 7.77(d, 1H), 7.45(s, 1H), 7.52~7.41(m, 12H), 7.31~7.28(t, 2H), 7.18(t, 1H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.65(s, 2H), 6.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.45 (s, 1H), 7.52-7.41 (m, 12H), 7.31-7.28 (d, 2H) (t, 2H), 7.18 (t, IH), 7.06 (t, IH), 6.98 (d, 2H), 6.77 , &Lt; / RTI &gt; 2H), 1.62 (s, 12H) 806806 1919 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 19H), 7.18~7.15(m, 5H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)2H), 7.45-7.28 (m, 19H), 7.18-7.15 (m, 5H), 6.65 (s, 2H), 6.59 (d, 2H), 6.48 (d, 2H), 1.62 (s, 12H) 782782 2020 7.92(s, 1H), 7.77~7.69(m, 5H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 19H), 7.18(t, 1H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)2H), 7.45-7.28 (m, 19H), 7.18 (t, 1H), 6.65 (s, 1H) 2H), 6.59 (d, 2H), 6.48 (d, 2H), 1.62 (s, 12H) 782782 2121 7.92(s, 1H), 7.77(d, 1H), 7.62~7.60(s, 2H), 7.52~7.28(m, 24H), 7.18(t, 1H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)2H), 6.59 (d, 2H), 7.92 (s, 1H), 7.92 (s, 2H), 6.48 (d, 2H), 1.62 (s, 12H) 782782 2222 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 18H), 7.18~7.15(m, 5H), 7.06(t, 1H), 6.77(t, 1H), 6.65(s, 2H), 6.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)(M, 5H), 7.06 (t, 2H), 7.92 (d, 2H) 1H), 6.77 (d, 2H), 1.62 (s, 12H) 782782 2323 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.28(m, 19H), 7.18(t, 1H), 6.65(s, 2H), 6.59(d, 2H), 6.48(d, 2H), 2.11~1.86(m, 4H), 1.62(s, 6H), 1.46~1.36(m, 4H)2H), 7.45-7.28 (m, 19H), 7.18 (t, 1H), 6.65 (s, 2H) , 6.59 (d, 2H), 6.48 (d, 2H), 2.11-1.86 (m, 4H), 1.62 (s, 6H), 1.46-1.36 731731 2424 7.92(d, 1H), 7.77(dd, 1H), 7.65~7.62(m, 3H), 7.52(d, 2H), 7.45~7.18(m, 22H), 7.09~7.06(d, 4H), 6.65(d, 2H), 6.59(d, 2H), 6.48(dd, 2H), 1.62(s, 6H)(M, 3H), 7.52 (d, 2H), 7.45 ~ 7.18 (m, 22H), 7.09 ~ 7.06 (d, 4H), 6.65 d, 2H), 6.59 (d, 2H), 6.48 (dd, 2H), 1.62 828828 2525 7.92(d, 1H), 7.77(dd, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.16(m, 26H), 7.01(d, 4H), 6.65(d, 2H), 6.59(d, 2H), 6.48(dd, 2H), 1.62(s, 6H)2H), 7.45-7.16 (m, 26H), 7.01 (d, 4H), 6.65 (d, 2H) , 6.59 (d, 2H), 6.48 (dd, 2H), 1.62 (s, 6H) 830830 2626 7.92(d, 1H), 7.77(d, 1H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 9H), 7.31~7.28(m, 3H), 7.18(m, 1H), 7.1(t, 2H), 6.71(t, 1H), 6.65(d, 2H), 6.53(dd, 2H), 6.48(dd, 2H), 1.77(m, 4H), 1.62(s, 6H), 1.21~1.19(m, 16H), 0.78(m, 6H)(M, 3H), 7.18 (m, 2H), 7.92 (d, IH) 2H), 1.47 (m, 4H), 1.62 (s, 6H), 7.17 (d, 2H) ), 1.21-1.19 (m, 16H), 0.78 (m, 6H) 770770 2727 7.92(s, 1H), 7.77~7.72(d, 9H), 7.62(s, 1H), 7.52(d, 2H), 7.45(d, 1H), 7.28(t, 1H), 7.18(t, 1H), 7.10(t, 2H), 6.71~6.65(m, 3H), 6.53~6.48(m, 4H), 1.62(s, 12H)2H), 7.48 (d, 1H), 7.28 (t, 1H), 7.18 (t, 1H) , 7.10 (t, 2H), 6.71-6.65 (m, 3H), 6.53-6.48 (m, 4H) 679679 2828 7.92(d, 1H), 7.77(dd, 1H), 7.62(d, 1H), 7.52(d, 2H), 7.45(dd, 1H), 7.3~7.18(m, 10H), 7.1(t, 2H), 6.71(t, 1H), 6.65(d, 2H), 6.53(dd, 2H), 6.48(dd, 2H), 2.52(t, 4H), 1.62(s, 12H), 1.49(m, 4H), 1.21~1.19(m, 12H), 0.78(m, 6H)2H), 7.45 (dd, 1H), 7.3-7.18 (m, 10H), 7.1 (t, 2H) 2H), 6.49 (d, 2H), 6.71 (d, 2H), 6.71 (d, 1.21 ~ 1.19 (m, 12H), 0.78 (m, 6H) 798798 2929 7.92(d, 1H), 7.77(dd, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 7H), 7.31~7.18(m, 11H), 6.65(s, 2H), 6.59(d, 2H), 6.48(dd, 2H), 2.52(t, 4H), 1.62(s, 12H), 1.49(m, 4H), 1.21~1.19(m, 12H), 0.78(m, 6H)(D, 2H), 7.45-7.41 (m, 7H), 7.31-7.18 (m, 11H), 6.65 (s, (M, 2H), 6.59 (d, 2H), 6.48 (dd, 2H), 2.52 (t, 4H), 1.62 , 6H) 874874 3030 7.92(d, 1H), 7.77(dd, 1H), 7.62(s, 1H), 7.51(d, 2H), 7.45~7.41(m, 4H), 7.31~7.18(m, 11H), 7.06(m, 1H), 6.98(dd, 2H), 6.77(m, 1H), 6.65(d, 2H), 6.59(dd, 1H), 6.48(dd, 2H), 2.52(t, 4H), 1.62(s, 12H), 1.49(m, 4H), 1.21~1.19(m, 12H), 0.78(m, 6H)2H), 7.41-7.41 (m, 4H), 7.31-7.18 (m, 11H), 7.06 (d, 2H), 6.65 (d, 2H), 6.65 (d, 2H), 6.65 (d, ), 1.49 (m, 4H), 1.21-1.19 (m, 12H), 0.78 (m, 6H) 874874 3131 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 3H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(m, 2H), 6.65(d, 3H), 6.48(dd, 3H), 1.62(s, 18H)(M, 4H), 7.18 (m, 2H), 7.92 (d, 2H) 2H), 6.65 (d, 3H), 6.48 (dd, 3H), 1.62 745745 3232 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 3H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(m, 2H), 6.65(d, 3H), 6.48(dd, 3H), 2.11~1.86(m, 4H), 1.62(s, 12H), 1.46~1.36(m, 4H)(M, 4H), 7.18 (m, 2H), 7.92 (d, 2H) 2H), 6.65 (d, 3H), 6.48 (dd, 3H), 2.11-1.86 (m, 4H) 771771 3333 7.92(d, 1H), 7.77(dd, 2H), 7.65~7.62(m, 3H), 7.52(d, 3H), 7.45~7.41(m, 10H), 7.31~7.06(m, 12H), 6.65(d, 3H), 6.48(dd, 3H), 1.62(s, 12H)(M, 12H), 6.65 (d, 2H), 7.65 (d, 2H) d, 3H), 6.48 (dd, 3H), 1.62 (s, 12H) 867867 3434 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 3H), 7.45~7.41(m, 10H), 7.31~7.16(m, 12H), 7.01(dd, 4H), 6.65(d, 3H), 6.48(dd, 3H), 1.62(s, 12H)(M, 12H), 7.01 (dd, 2H), 7.92 (d, 2H) 4H), 6.65 (d, 3H), 6.48 (dd, 3H), 1.62 869869 3535 7.92(d, 1H), 7.79~7.77(m, 2H), 7.62(d, 1H), 7.56~7.52(m, 4H), 7.45~7.41(m, 9H), 7.33~7.18(m, 7H), 6.65(d, 2H), 6.48(dd, 2H), 6.23(dd, 1H), 1.62(s, 12H)2H), 7.62 (d, 1H), 7.56-7.52 (m, 4H), 7.45-7.41 (m, 9H), 7.33-7.18 6.65 (d, 2H), 6.48 (dd, 2H), 6.23 (dd, 719719 3636 7.92(d, 1H), 7.79~7.77(m, 2H), 7.62(d, 1H), 7.56~7.52(m, 3H), 7.45~7.41(m, 9H), 7.31~7.15(m, 7H), 6.97(t, 1H), 6.65(d, 2H), 6.48(dd, 2H), 6.29(dd, 1H), 1.62(s, 12H)7.92 (d, 1H), 7.79-7.77 (m, 2H), 7.62 (d, 1H), 7.56-7.52 (m, 3H), 7.45-7.41 (m, 9H), 7.31-7.15 1H), 6.62 (d, 2H), 6.97 (d, 2H) 719719 3737 7.92(d, 1H), 7.79~7.77(m, 2H), 7.62(d, 1H), 7.56~7.52(m, 4H), 7.45~7.41(m, 9H), 7.31~7.18(m, 7H), 6.65(d, 2H), 6.48(dd, 2H), 6.29(dd, 1H), 1.62(s, 12H)7.92 (d, 1H), 7.79 (m, 2H), 7.62 (d, 1H), 7.56-7.52 (m, 4H), 7.45-7.41 (m, 9H), 7.31-7.18 6.65 (d, 2H), 6.48 (dd, 2H), 6.29 (dd, 719719 3838 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.2~7.18(m, 3H), 6.94(d, 1H), 6.65(d, 2H), 6.48(dd, 2H), 6.38(dd, 1H), 1.62(s, 18H)(M, 4H), 7.2-7.18 (m, 2H), 7.92 (d, (m, 3H), 6.94 (d, 1H), 6.65 (d, 2H), 6.48 (dd, 2H) 745745 3939 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.16(m, 13H), 7.01(dd, 4H), 6.94(d, 1H), 6.65(d, 2H), 6.48(dd, 2H), 6.38(dd, 1H), 1.62(s, 12H)(M, 13H), 7.01 (dd, 2H), 7.92 (d, 2H) 2H), 6.48 (dd, 2H), 6.38 (dd, 1H), 1.62 (s, 12H) 869869 4040 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(m, 2H), 6.93(t, 1H), 6.81(dd, 1H), 6.65(d, 2H), 6.48(dd, 3H), 1.62(s, 18H)(M, 4H), 7.18 (d, 2H), 7.92 (d, 2H) (D, 2H), 6.93 (d, 1H), 6.81 (d, 745745 4141 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(m, 2H), 6.93(t, 1H), 6.81(dd, 1H), 6.65(d, 2H), 6.48(dd, 3H), 2.11(m, 2H), 1.86(m, 2H), 1.62(s, 12H) 1.46~1.36(m, 4H)(M, 4H), 7.18 (d, 2H), 7.92 (d, 2H) 2H), 1.86 (m, 2H), 1.62 (s, 12H), 6.91 (d, ) 1.46-1.36 (m, 4H) 771771 4242 7.92(d, 1H), 7.77(dd, 2H), 7.62(d, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.16(m, 12H), 7.01(dd, 4H), 6.93(t, 1H), 6.81(dd, 1H), 6.65(d, 2H), 6.48(dd, 3H), 1.62(s, 12H)(M, 12H), 7.01 (dd, 2H), 7.92 (d, 2H) 2H), 6.48 (dd, 3H), 1.62 (s, 12H) 869869 4343 7.92(d, 1H), 7.77(dd, 2H), 7.65~7.62(m, 3H), 7.52(d, 2H), 7.45~7.31(m, 10H), 7.31~7.06(m, 12H), 6.93(t, 1H), 6.81(dd, 1H), 6.65(d, 2H), 6.48(dd, 3H) 1.62(s, 12H)(M, 12H), 6.93 (d, 2H), 7.92 (d, 2H) (d, 1H), 6.81 (dd, 1H), 6.65 867867 4444 7.97~7.92(m, 3H), 7.77(dd, 1H), 7.62(d, 1H), 7.52~7.41(m, 14H), 7.31~7.28(m, 4H), 7.18(m, 1H), 6.88(dd, 1H), 6.65(d, 2H), 6.48(dd, 2H), 1.62(s, 12H)1H), 7.88 (d, 1H), 7.72 (d, 1H), 7.97-7.92 (m, 3H) dd, 1 H), 6.65 (d, 2H), 6.48 (dd, 2H), 1.62 679679 4545 8.83(dd, 2H), 8.02(dd, 2H), 7.92(d, 1H), 7.78~7.72(m, 5H), 7.62(d, 1H), 7.52~7.28(m, 14H), 7.18(m, 1H), 6.81(d, 1H), 6.65(d, 2H), 6.48(dd, 2H), 1.62(s, 12H)(D, 2H), 7.92 (d, 1H), 7.78-7.72 (m, 5H), 7.62 1H), 6.81 (d, 1H), 6.65 (d, 2H), 6.48 (dd, 2H), 1.62 729729 4646 7.92(s, 1H), 7.78~7.74(m, 3H), 7.67~7.62(m, 3H), 7.52(d, 2H), 7.45~7.26(m, 15H), 7.18(m, 1H), 6.65(d, 2H), 6.48(dd, 2H), 1.62(s, 12H)2H), 7.45-7.26 (m, 15H), 7.18 (m, 1H), 6.65 (m, 2H) d, 2H), 6.48 (dd, 2H), 1.62 (s, 12H) 679679 4747 7.92(d, 1H), 7.77(dd, 1H), 7.69(dd, 4H), 7.62(d, 1H), 7.52~7.31(m, 21H), 7.18(m, 1H), 6.85(d, 1H), 6.65(d, 2H), 6.55(dd, 1H), 6.48(dd, 2H), 1.62(s, 12H)1H), 7.85 (d, 1H), 7.92 (d, 2H), 7.92 (d, , 6.65 (d, 2H), 6.55 (dd, 1H), 6.48 781781 4848 9.03(d, 2H), 8.78(d, 1H), 8.22(d, 2H), 8.12(s, 1H), 7.98~7.92(m, 5H), 7.82(s, 1H), 7.72~7.38(m, 16H), 7.18(d, 1H), 6.85(s, 2H), 6.68(d, 2H), 1.82(s, 12H)1H), 7.72-7.38 (m, 5H), 7.82 (d, 2H) 2H), 1.82 (s, 12H), 7.18 (d, IH) 780780 4949 9.03(d, 1H), 8.78(d, 1H), 8.22(d, 1H), 8.12(s, 1H), 7.98~7.92(m, 3H), 7.82~7.81(m, 3H), 7.72~7.38(m, 16H), 7.18(d, 1H), 6.85(s, 2H), 6.68(d, 2H), 1.82(s, 12H)(M, 3H), 7.82-7.81 (m, 3H), 7.72-7.38 (m, 3H) 2H), 1.82 (s, 12H), 6.85 (d, 2H) 729729 5050 8.12~8.10(m, 3H), 8.02~7.98(m, 2H), 7.83~7.82(m, 2H), 7.72~7.51(m, 16H), 7.51~7.48(m, 3H), 7.38(d, 1H), 6.85(s, 2H), 6.79(d, 2H), 6.68(d, 2H), 1.82(s, 12H)(M, 2H), 7.72-7.51 (m, 16H), 7.51-7.48 (m, 3H), 7.38 ), 6.85 (s, 2H), 6.79 (d, 2H), 6.68 755755 5151 8.12(s, 1H), 7.97(d, 1H), 7.82(s, 1H), 7.72(d, 2H), 7.65~7.48(m, 22H), 7.38(d, 1H), 7.18(d, 2H), 6.85(s, 3H), 6.68(d, 2H), 1.82(s, 12H)2H), 7.38 (d, IH), 7.18 (d, 2H), 7.72 (d, , 6.85 (s, 3H), 6.68 (d, 2H), 1.82 (s, 12H) 780780 5252 8.12(s, 1H), 7.97(d, 1H), 7.82(s, 1H), 7.72(d, 2H), 7.65~7.48(m, 22H), 7.38(d, 1H), 7.16(s, 1H), 6.95(s, 2H), 6.85(s, 2H), 6.68(d, 2H), 1.82(s, 12H)1H), 7.16 (s, 1H), 7.72 (d, 2H), 7.65 (d, 2H), 6.85 (s, 2H), 6.85 (s, 2H) 782782 5353 8.12(s, 1H), 7.97(d, 1H), 7.85~7.82(m, 3H), 7.72(d, 2H), 7.65~7.38(m, 22H), 7.29~7.26(m, 4H), 6.85(s, 2H), 6.79(s, 2H), 6.68(d, 2H), 1.82(s, 6H)2H), 7.29-7.26 (m, 4H), 6.85 (d, 2H), 7.72 (d, (s, 2H), 6.79 (s, 2H), 6.68 (d, 2H), 1.82 828828 5454 8.12(s, 1H), 7.97(d, 1H), 7.82(s, 1H), 7.72(d, 2H), 7.65~7.48(m, 19H), 7.38(d, 1H), 6.85(s, 2H), 6.79(s, 2H), 6.68(d, 2H), 2.31~2.06(m, 4H), 1.82(s, 6H), 1.66~1.56(m, 4H)2H), 7.65 (d, IH), 7.85 (d, IH), 7.87 (d, 2H), 6.68 (d, 2H), 2.31-2.06 (m, 4H), 1.82 (s, 6H), 1.66-1.56 731731 5555 8.12(s, 1H), 7.97(d, 1H), 7.82(s, 1H), 7.72(d, 2H), 7.65~7.36(m, 26H), 7.11(d, 4H), 6.85(s, 2H), 6.79(s, 2H), 6.68(d, 2H), 1.82(s, 6H)2H), 7.65 (d, 2H), 7.65 (s, 1H), 7.97 (d, , 6.79 (s, 2H), 6.68 (d, 2H), 1.82 (s, 6H) 830830 5656 8.12(s, 2H), 7.82(s, 2H), 7.72(d, 2H), 7.62~7.51(m, 20H), 7.30(t, 2H), 6.91~6.85(m, 3H), 6.73~6.68(m, 4H), 1.82(s, 12H)2H), 7.82 (s, 2H), 7.72 (d, 2H), 7.62-7.51 (m, m, 4H), 1.82 (s, 12H) 782782 5757 8.12(s, 1H), 8.09(d, 1H), 7.82(s, 1H), 7.74~7.72(m, 3H), 7.64~7.42(m, 17H), 7.26~7.18(m, 3H), 6.97(t, 1H), 6.85(s, 1H), 6.79(d, 1H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)(M, 3H), 7.64-7.42 (m, 3H), 7.26-7.18 (m, 3H), 6.97 (d, IH), 6.83 (d, IH), 6.82 (s, 679679 5858 8.12(s, 1H), 7.99~7.97(m, 2H), 7.85~7.82(m, 3H), 7.76~7.72(m, 3H), 7.65~7.26(m, 22H), 7.13(t, 1H), 7.01(t, 1H), 6.85(s, 1H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 6H)2H), 7.13 (t, IH), 7.63 (d, IH), 7.75 (m, 1H), 6.82 (s, 1H), 6.68 (d, 2H), 6.43 (d, 842842 5959 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.65~7.36(m, 22H), 7.21~7.13(m, 5H), 7.01(t, 1H), 6.85(s, 1H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 6H)(M, 2H), 7.21-7.13 (m, 5H), 7.72-7.72 (m, 3H) 1H), 6.82 (s, 1H), 6.68 (d, 2H), 6.43 (d, 844844 6060 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.65~7.38(m, 16H), 7.13(t, 1H), 7.01(t, 1H), 6.85(s, 1H), 6.68(d, 2H), 6.43(d, 1H), 2.31~2.06(m, 4H), 1.82(s, 6H), 1.66~1.56(m, 4H)2H), 7.82 (s, 1H), 7.76-7.72 (m, 3H), 7.65-7.38 (m, 16H), 7.13 4H), 1.82 (s, 6H), 1.66-1.56 (m, 4H), 6.85 (d, 745745 6161 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.65~7.61(m, 9H), 7.53~7.38(m, 7H), 7.13(t, 1H), 7.01(t, 1H), 6.85(s, 1H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 12H)2H), 7.82 (s, 1H), 7.76-7.72 (m, 3H), 7.65-7.61 (m, 9H), 7.53-7.38 2H), 6.83 (d, 1H), 1.82 (s, 12H), 7.13 (t, 719719 6262 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.72(m, 4H), 7.65~7.61(m, 9H), 7.53~7.38(m, 7H), 6.85(s, 2H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 12H)2H), 7.82 (s, 1H), 7.76-7.72 (m, 4H), 7.65-7.61 (m, 9H), 7.53-7.38 2H), 6.68 (d, 2H), 6.43 (d, 1H), 1.82 719719 6363 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.38(m, 20H), 6.85(s, 2H), 6.68(d, 2H), 6.43(d, 1H), 2.31~2.06(m, 4H), 1.82(s, 6H), 1.66~1.56(m, 4H)2H), 6.68 (d, 2H), 6.43 (d, 2H), 7.82 (s, 1H), 2.31-2.06 (m, 4H), 1.82 (s, 6H), 1.66-1.56 (m, 4H) 745745 6464 8.12(s, 1H), 7.99~7.97(m, 2H), 7.82(s, 1H), 7.76~7.36(m, 26H), 7.11(s, 4H), 6.85(s, 2H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 6H)2H), 6.68 (d, 2H), 7.82 (s, 1H), 7.99 (s, 2H), 6.43 (d, 1 H), 1.82 (s, 6 H) 844844 6565 8.12(s, 1H), 7.99(d, 1H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.64~7.42(m, 20H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)2H), 6.85 (s, 1H), 6.79 (d, 1H), 7.79 (d, 2H), 6.68 (d, IH), 6.43 (d, IH), 1.82 679679 6666 8.12(s, 1H), 7.99~7.97(m, 2H), 7.85~7.82(m, 3H), 7.76~7.26(m, 26H), 6.85(s, 2H), 6.68(d, 2H), 6.43(d, 1H), 1.82(s, 6H)(S, 2H), 6.68 (d, 2H), 6.43 (m, 2H), 7.75-7.82 d, 1 H), 1.82 (s, 6 H) 842842 6767 8.12(s, 1H), 7.99 (d, 1H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.62~7.42(m, 23H), 7.18(d, 2H), 6.85(s, 2H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)(D, 2H), 6.85 (s, 1H), 7.82 (s, 1H) 2H), 6.68 (d, IH), 6.43 (d, IH), 1.82 755755 6868 8.12(s, 1H), 7.99 (d, 1H), 7.82(s, 1H), 7.76~7.70(m, 4H), 7.62~7.42(m, 21H), 7.18(d, 2H), 7.05(s, 1H), 6.85(s, 1H), 6.71~6.68(m, 2H), 6.43(d, 1H), 1.82(s, 6H)2H), 7.05 (s, 1H), 7.82 (s, 1H), 7.98 (s, 1H), 6.85 (s, 1H), 6.71-6.68 (m, 2H), 6.43 755755 6969 8.12(s, 1H), 7.99 (d, 1H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.62~7.42(m, 23H), 7.16(d, 1H), 6.95(d, 2H), 6.85(s, 1H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)(M, 3H), 7.62-7.42 (m, 23H), 7.16 (d, IH), 6.95 (d, IH) 2H), 6.85 (s, IH), 6.68 (d, IH), 6.43 755755 7070 8.12(s, 1H), 7.99 (d, 1H), 7.89(d, 4H), 7.82(s, 1H), 7.76~7.70(m, 4H), 7.62~7.42(m, 19H), 7.05(s, 1H), 6.85(s, 1H), 6.75(d, 1H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)(M, 4H), 7.62-7.42 (m, 19H), 7.05 (s, 1H) 1H), 6.82 (s, 1H), 6.85 (d, IH) 755755 7171 8.12(s, 1H), 7.99(d, 1H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.64~7.42(m, 20H), 7.35(d, 4H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 6H)2H), 7.35 (d, 4H), 6.85 (s, 1H), 7.82 (s, 1H), 6.83 (d, 2H), 6.68 (d, 755755 7272 8.12(s, 1H), 7.99(d, 2H), 7.82~7.72(m, 6H), 7.62~7.42(m, 16H), 6.85(s, 1H), 6.68(d, 1H), 6.43(d, 2H), 1.82(s, 6H)(S, 1H), 6.68 (d, 1H), 6.43 (d, 2H), 7.82 2H), 1.82 (s, 6H) 693693 7373 8.12(s, 1H), 7.99(d, 2H), 7.82~7.72(m, 5H), 7.62~7.35(m, 16H), 7.17(t, 1H), 6.85(s, 1H), 6.68(d, 1H), 6.49~6.43(m, 2H), 1.82(s, 6H)1H), 6.85 (s, 1H), 6.68 (d, 2H), 7.82 (m, 1H), 6.49-6.43 (m, 2H), 1.82 (s, 6H) 693693 7474 8.12(s, 1H), 7.99(d, 2H), 7.82~7.72(m, 6H), 7.62~7.32(m, 16H), 6.85(s, 1H), 6.68(d, 1H), 6.49~6.43(m, 2H), 1.82(s, 6H)1H), 6.68 (d, 1H), 6.49-6.43 (m, 6H), 7.62 (s, m, 2 H), 1.82 (s, 6 H) 693693 7575 8.26(d, 2H), 8.12(s, 1H), 7.99(d, 1H), 7.82~7.72(m, 7H), 7.62~7.42(m, 16H), 6.85(s, 1H), 6.68(d, 1H), 6.49~6.43(m, 2H), 1.82(s, 6H)(D, 2H), 8.12 (s, 1H), 7.99 (d, 1H), 7.82-7. 72 (m, 7H), 7.62-7.42 1H), 6.49-6.43 (m, 2H), 1.82 (s, 6H) 743743 7676 8.55(d, 1H), 8.12~8.08(m, 2H), 7.91(d, 1H), 7.72(d, 1H), 7.62~7.51(m, 20H), 7.16(s, 1H), 6.98(d, 1H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 1.82(s, 6H)1H), 7.98 (d, 1H), 7.62 (d, 1H), 7.62 (d, 1H), 6.85 (s, 1H), 6.79 (d, 2H), 6.68 695695 7777 8.55(d, 1H), 8.12~8.08(m, 2H), 7.97(d, 1H), 7.91(d, 1H), 7.82(s, 1H), 7.72(d, 2H), 7.65~7.48(m, 14H), 7.38(t, 1H), 7.16(s, 1H), 6.98(d, 1H), 6.85(s, 2H), 6.68(d, 2H), 1.82(s, 12H)1H), 7.72 (d, 2H), 7.65-7.48 (m, 2H), 7.97 (d, 2H), 6.82 (d, 2H), 1.82 (s, 12H), 7.28 (s, 735735 7878 8.55(d, 1H), 8.12~8.08(m, 2H), 7.91(d, 1H), 7.82(s, 1H), 7.72(d, 1H), 7.62~7.51(m, 16H), 7.26~7.16(m, 4H), 6.98~6.97(m, 2H), 6.85(s, 1H), 6.79(d, 1H), 6.68(d, 1H), 1.82(s, 6H)1H), 7.72 (d, 1H), 7.62-7.51 (m, 16H), 7.26-7.16 (d, (d, 1H), 6.82 (d, 1H), 1.82 (s, 6H) 695695 7979 8.55(d, 1H), 8.12~8.08(m, 2H), 7.91(d, 1H), 7.82(s, 1H), 7.72(d, 1H), 7.62~7.51(m, 19H), 7.35(d, 4H), 7.16(s, 1H), 6.98(d, 1H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 1.82(s, 6H)1H), 7.72 (d, 1H), 7.62 (d, 1H), 7.62 (d, 2H), 6.68 (d, IH), 1.82 (s, 6H), 6.85 (d, IH) 771771 8080 8.55(d, 1H), 8.12~8.08(m, 2H), 7.97(d, 1H), 7.91(d, 1H), 7.82(s, 1H), 7.72(d, 1H), 7.65~7.48(m, 14H), 7.38(d, 1H), 7.16~7.13(m, 2H), 7.01~7.97(m, 2H), 6.85(s, 1H), 6.68(d, 2H), 1.82(s, 12H)(M, 2H), 7.97 (d, 1H), 7.91 (d, 1H), 7.82 2H), 6.82 (d, 2H), 1.82 (s, 12H), 7.18 (d, 735735 8181 8.12(s, 1H), 8.03~7.97(m, 2H), 7.87(s, 1H), 7.82(s, 1H), 7.73(d, 2H), 7.65~7.48(m, 21H), 7.38(t, 1H), 6.85(s, 1H), 6.79(d, 4H), 6.68(d, 1H), 1.82(s, 12H)(M, 2H), 7.87 (s, 1H), 7.82 (s, 1H) 1H), 6.85 (s, 1H), 6.79 (d, 4H), 6.68 781781 8282 8.12(s, 1H), 8.03~7.97(m, 2H), 7.87(s, 1H), 7.82(s, 1H), 7.73(d, 2H), 7.65~7.48(m, 18H), 7.38(t, 1H), 7.26(t, 1H), 7.18(d, 2H), 6.97(t, 1H), 6.85(s, 1H), 6.79(d, 3H), 6.68(d, 1H), 1.82(s, 12H)(M, 2H), 7.87 (s, 1H), 7.82 (s, 1H) 1H), 7.28 (d, 1H), 7.18 (d, 2H), 6.97 (t, ) 781781 8383 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.73(d, 2H), 7.65~7.61(m, 14H), 7.54~7.48(m, 4H), 7.38(t, 2H), 7.13(t, 1H), 7.01(d, 1H), 6.85(s, 1H), 6.68(d, 2H), 1.82(s, 18H)2H), 7.65-7.61 (m, 14H), 7.54-7.48 (m, 3H) 1H), 6.82 (d, 2H), 1.82 (s, 18H), 7.38 (t, 821821 8484 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.73(d, 2H), 7.65~7.48(m, 20H), 7.38(t, 1H), 7.35(d, 4H), 6.85(s, 1H), 6.79(d, 4H), 6.68(d, 1H), 1.82(s, 12H)(M, 3H), 7.87 (s, 1H), 7.82 (s, 1H), 7.73 (d, 2H), 7.65-7.48 (D, 1H), 7.35 (d, 4H), 6.85 (s, 857857 8585 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.73(d, 3H), 7.65~7.61(m, 12H), 7.51~7.48(m, 4H), 7.38(t, 2H), 6.85(s, 2H), 6.79(d, 2H), 6.68(d, 2H), 1.82(s, 18H)1H), 7.73 (d, 3H), 7.65-7.61 (m, 12H), 7.51-7.48 (m, 2H), 6.82 (s, 2H), 6.82 (d, 2H) 821821 8686 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.76~7.72(m, 4H), 7.65~7.61(m, 12H), 7.51~7.48(m, 6H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 6.43(d, 1H), 1.82(s, 12H)(M, 12H), 7.51 (s, 1H), 8.02 (s, 1H), 8.03-7.97 2H), 6.68 (d, 1H), 6.43 (d, 1H), 1.82 (s, 12H) 795795 8787 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.76~7.72(m, 4H), 7.65~7.61(m, 11H), 7.51~7.42(m, 7H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 6.49(d, 1H), 1.82(s, 12H)(M, 2H), 7.87 (s, 1H), 7.76-7.72 (m, 4H) 2H), 6.68 (d, 1H), 6.49 (d, 1H), 1.82 (s, 12H) 795795 8888 8.12(s, 1H), 8.03~7.97(m, 3H), 7.87(s, 1H), 7.82(s, 1H), 7.76~7.72(m, 3H), 7.65~7.61(m, 11H), 7.51~7.35(m, 7H), 7.17(t, 1H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 6.49(d, 1H), 1.82(s, 12H)(M, 3H), 7.87 (s, 1H), 7.82-7.72 (s, 1H) 2H), 6.68 (d, 1H), 6.49 (d, 1H), 1.82 (s, 12H) 795795 8989 9.03(d, 1H), 8.78(d, 1H), 8.22(d, 1H), 8.12(s, 1H), 8.03~7.82(m, 8H), 7.65~7.38(m, 18H), 7.18(d, 1H), 6.85~6.79(m, 3H), 7.42(d, 1H), 1.82(s, 12H)(M, 8H), 7.65-7.38 (m, 18H), 7.18 (d, 1H), 8.08 (d, 1H), 6.85-6.79 (m, 3H), 7.42 (d, 1H), 1.82 805805 9090 8.17~8.12(m, 3H), 8.03~7.97(m, 2H), 7.87(s, 1H), 7.82(s, 1H), 7.72~7.48(m, 20H), 7.38(t, 1H), 7.08(d, 1H), 6.85(s, 1H), 6.79(d, 2H), 6.68(d, 1H), 1.82(s, 12H)(M, 2H), 7.87 (s, 1H), 7.82 (s, 1H), 7.72-7.48 (d, IH), 6.85 (s, IH), 6.79 (d, 755755 9191 8.12(s, 1H), 8.03~7.99(m, 3H), 7.87(s, 1H), 7.82~7.73(m, 6H), 7.64~7.42(m, 18H), 6.79(d, 2H), 6.43(d, 2H), 1.82(s, 6H)(D, 2H), 6.43 (d, 2H), 7.63 (s, 1H) d, 2 H), 1.82 (s, 6 H) 769769 9292 8.12(s, 1H), 8.03~7.99(m, 3H), 7.87(s, 1H), 7.82~7.73(m, 6H), 7.64~7.42(m, 18H), 6.79(d, 2H), 6.49(d, 1H), 6.43(d, 1H), 1.82(s, 6H)2H), 6.49 (d, 2H), 7.79 (d, IH), 8.12 (s, d, 1 H), 6.43 (d, 1 H), 1.82 (s, 6 H) 769769 9393 8.12(s, 1H), 8.03~7.99(m, 3H), 7.87(s, 1H), 7.82~7.73(m, 5H), 7.64~7.35(m, 18H), 7.17(d, 1H), 6.79(d, 2H), 6.49(d, 1H), 6.43(d, 1H), 1.82(s, 6H)1H), 7.17 (d, 1H), 6.79 (m, 2H), 7.87 (d, 2H), 6.49 (d, 1H), 6.43 (d, 769769 9494 8.12(s, 1H), 8.03~7.99(m, 2H), 7.87(s, 1H), 7.82(s, 1H), 7.76~7.73(m, 3H), 7.64~7.42(m, 22H), 6.79(d, 4H), 6.43(d, 1H), 1.82(s, 6H)(M, 2H), 7.79 (s, 1H), 7.82 (s, 1H) d, 4H), 6.43 (d, IH), 1.82 (s, 6H) 755755 9595 7.92(s, 1H), 7.83~7.79(m, 2H), 7.67(s, 1H), 7.62(s, 1H), 7.56~7.53(m, 3H), 7.44~7.22(m, 19H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.59(d, 3H), 6.23(d, 1H), 1.62(s, 6H)(S, 1H), 7.63 (s, 1H), 7.83-7.79 (m, 2H), 7.67 2H), 6.77 (d, IH), 6.98 (d, IH) 755755 9696 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 1H), 7.42~7.41(m, 9H), 7.31~7.28(m, 3H), 7.18(t, 1H), 7.10(t, 2H), 6.93(t, 1H), 6.81(d, 1H), 6.71~6.65(m, 2H), 6.53~6.48(m, 4H), 1.62(s, 12H)(M, 3H), 7.18 (t, 1H), 7.92 (d, 1H) 2H), 6.53-6.48 (m, 4H), 1.62 (s, 12H), 6.91 (d, 629629 9797 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 1H), 7.42~7.41(m, 12H), 7.31~7.28(m, 4H), 7.18(t, 1H), 7.06(t, 1H), 6.98~6.93(m, 3H), 6.81~6.77(m, 2H), 6.65(s, 1H), 6.59(d, 1H), 6.48(d, 2H), 1.62(s, 12H)(M, 4H), 7.18 (t, 1H), 7.92 (d, 1H) 1H), 7.06 (t, IH), 6.98-6.93 (m, 3H), 6.81-6.77 (m, 2H), 6.65 (s, 12 H) 705705 9898 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 1H), 7.45~7.28(m, 18H), 7.18(t, 1H), 6.93(t, 1H), 6.81~6.78(m, 3H), 6.65(s, 1H), 6.49~6.48(m, 3H), 1.62(s, 12H)1H), 7.92 (d, IH), 7.92 (d, IH), 7.92 (s, , 6.81 (m, 3H), 6.65 (s, 1H), 6.49-6.48 705705 9999 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 1H), 7.45~7.28(m, 19H), 7.18(t, 1H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 1H), 6.59~6.58(m, 2H), 6.49~6.48(m, 2H), 1.62(s, 12H)1H), 7.92 (d, IH), 7.92 (d, IH), 7.92 (s, , 6.81 (d, IH), 6.65 (s, IH), 6.59-6.58 (m, 2H), 6.49-6.48 705705 100100 7.92(s, 1H), 7.77(d, 2H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(t, 2H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 2H), 6.48~6.42(m, 3H), 1.62(s, 18H)(M, 4H), 7.18 (t, 2H), 7.92 (d, 2H) 2H), 6.93 (s, 2H), 6.93 (d, IH) 745745 101101 7.92(s, 1H), 7.77(d, 2H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(t, 2H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 2H), 6.48~6.42(m, 3H), 1.62(s, 18H)(M, 4H), 7.18 (t, 2H), 7.92 (d, 2H) 2H), 6.93 (s, 2H), 6.93 (d, IH) 745745 102102 7.92(s, 1H), 7.77(d, 2H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.41(m, 10H), 7.31~7.16(m, 12H), 7.01~6.93(m, 5H), 6.81(d, 1H), 6.65(s, 2H), 6.48~6.42(m, 3H), 1.62(s, 12H)(M, 12H), 7.01-6.93 (m, 2H), 7.92 (s, 1H) 2H), 6.48-6.42 (m, 3H), 1.62 (s, 12H) 870870 103103 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 1H), 7.45~7.28(m, 19H), 7.18~7.15(m, 5H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 1H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)(M, 5H), 6.93 (s, 1H), 7.92 (d, 1H) 1H), 6.81 (d, 1H), 6.65 (s, 1H), 6.59 (d, 2H), 6.48 782782 104104 8.45(d, 1H), 8.32(d, 1H), 7.98~7.92(m, 3H), 7.77(d, 1H), 7.62(s, 1H), 7.52~7.41(m, 15H), 7.31~7.28(m, 3H), 7.18(t, 1H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 1H), 6.59(d, 2H), 6.48(d, 2H), 1.62(s, 12H)1H), 7.52-7.41 (m, 15H), 7.31-7.28 (m, 3H), 7.77 (d, (m, 3H), 7.18 (t, IH), 6.93 (t, IH), 6.81 (d, IH), 6.65 , 12H) 755755 105105 7.92(s, 1H), 7.79~7.77(m, 2H), 7.62(s, 1H), 7.56~7.52(m, 3H), 7.45~7.41(m, 9H), 7.33~7.18(m, 7H), 6.93(t, 1H), 6.81(d, 1H), 6.65(s, 1H), 6.48(d, 2H), 6.23(d, 1H), 1.62(s, 12H)2H), 7.62 (s, 1H), 7.56-7.52 (m, 3H), 7.45-7.41 (m, 9H), 7.33-7.18 2H), 6.23 (d, 1H), 1.62 (s, 12H), 6.93 (d, 719719 106106 7.92(s, 1H), 7.79~7.77(m, 2H), 7.62(s, 1H), 7.56~7.52(m, 2H), 7.45~7.41(m, 9H), 7.31~7.15(m, 7H), 6.97~6.93(m, 2H), 6.81(d, 1H), 6.65(s, 1H), 6.48(d, 2H), 6.29(d, 1H), 1.62(s, 12H)(M, 2H), 7.41-7.41 (m, 9H), 7.31-7.15 (m, 7H) 2H), 6.29 (d, 1H), 6.62 (s, 1H), 6.97 (d, 719719 107107 7.92(s, 1H), 7.79(d, 1H), 7.62(s, 1H), 7.56~7.54(m, 2H), 7.44~7.22(m, 20H), 6.93(t, 1H), 6.81(d, 1H), 6.59(d, 2H), 6.48(d, 1H), 6.23(d, 1H), 1.62(s, 6H)(M, 2H), 6.93 (s, 1H), 7.81 (d, 1H) 2H), 6.48 (d, IH), 6.23 (d, IH), 1.62 (s, 6H) 679679 108108 7.92(s, 1H), 7.77(d, 2H), 7.62(s, 1H), 7.52(d, 1H), 7.45~7.41(m, 10H), 7.31~7.28(m, 4H), 7.18(t, 2H), 6.93(t, 2H), 6.81(d, 2H), 6.65(d, 1H), 6.48(d, 3H), 1.62(s, 18H)(M, 4H), 7.18 (t, 2H), 7.92 (d, 2H) (D, 2H), 6.93 (d, 2H), 6.81 (d, 2H) 745745 109109 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.18(m, 24H), 6.65(s, 1H), 6.59(d, 4H), 6.48(d, 1H), 1.62(s, 12H)2H), 7.45-7.18 (m, 24H), 6.65 (s, 1H), 6.59 (d, 4H) , 6.48 (d, 1 H), 1.62 (s, 12 H) 782782 110110 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.18(m, 21H), 7.06(t, 1H), 6.98(d, 2H), 6.77(t, 1H), 6.65(s, 1H), 6.59(d, 3H), 6.48(t, 1H), 1.62(s, 12H)2H), 7.45-7.18 (m, 2H), 7.06 (t, 1H), 6.98 (d, 2H) , 6.77 (t, IH), 6.65 (s, IH) 782782 111111 7.92(s, 1H), 7.77(d, 1H), 7.62(s, 1H), 7.52(d, 2H), 7.45~7.18(m, 28H), 6.65(s, 1H), 6.59(d, 4H), 6.48(t, 1H), 1.62(s, 12H)(S, 1H), 7.65 (d, 1H), 7.92 (s, 1H) , 6.48 (t, 1 H), 1.62 (s, 12 H) 858858 112112 7.92(s, 1H), 7.79~7.77(m, 4H), 7.62(s, 1H), 7.56~7.52(m, 3H), 7.45~7.41(m, 14H), 7.31~7.18(m, 8H), 6.65(s, 1H), 6.59(d, 4H), 6.48(t, 1H), 1.62(s, 12H)(M, 8H), 7.41-7.41 (m, 14H), 7.31-7.18 (m, 8H) 6.65 (s, 1H), 6.59 (d, 4H), 6.48 (t, 872872 113113 7.92(s, 1H), 7.79~7.77(m, 4H), 7.62(s, 1H), 7.56~7.53(m, 4H), 7.45~7.22(m, 22H), 6.59(d, 4H), 6.23(d, 1H), 1.62(s, 6H)2H), 6.59 (d, 4H), 6.23 (m, 2H), 7.92 (s, d, 1 H), 1.62 (s, 6 H) 846846 114114 7.98(d, 1H), 7.79(d, 1H)7.75(m, 2H), 7.65m(4H), 7.59(m, 4H), 7.51~7.25(m, 21H), 7.17(dd, 1H), 1.31(s, 6H)1H), 7.79 (d, 1H), 7.79 (d, 1H), 7.75 (m, 2H), 7.65 (s, 6 H) 665665

비교예Comparative Example 화합물 compound

<α-NPD> <화학식 d>< alpha -NPD > < EMI ID =

Figure 112017005607886-pat00013
Figure 112017005607886-pat00014

Figure 112017005607886-pat00013
Figure 112017005607886-pat00014

<화학식 e> <화학식 114><Formula e> <Formula 114>

Figure 112017005607886-pat00015
Figure 112017005607886-pat00016

Figure 112017005607886-pat00015
Figure 112017005607886-pat00016

비교예Comparative Example 1 One

하기 화학식 f로 표시되는 화합물 f를 형광 청색 호스트로 사용하고, 하기 화학식 g로 표시되는 화합물 g를 형광 청색 도판트로 사용하고, 2-TNATA(4,4’,4”-tris(N-naphthalen-2-yl)-N-phenylamino)-triphenylamine)을 정공주입층 물질로 사용하고, α-NPD(N,N’-di(naphthalene-1-yl)-N,N’-diphenylbenzidine)을 정공수송층 물질로 사용하여 다음과 같은 구조를 갖는 유기발광소자를 제작하였다: ITO/2-TNATA(60 nm)/α-NPD(30 nm)/ 화합물f + 화합물 g(30 nm)/Alq3(25 nm)/Liq(1 nm)/ Al(100 nm).(4,4 ', 4 &quot; -tris (N-naphthalen-2-yl) phthalocyanine), using compound f represented by the following formula f as a fluorescent blue host and using compound g represented by the following formula g as a fluorescent blue dopant: 2-yl) -N-phenylamino) -triphenylamine was used as a hole injection layer material and α-NPD (N, N'-di (naphthalene- (30 nm) / compound f + compound g (30 nm) / Alq 3 (25 nm) was used as an organic light emitting device having the following structure: ITO / 2-TNATA / Liq (1 nM) / Al (100 nM).

애노드는 코닝(Corning)사의 15Ω/cm2 (1000Å) ITO 유리 기판을 25 mm x 25 mm x 0.7 mm크기로 잘라서 아세톤 이소프로필 알콜과 순수한 물 속에서 각 15분 동안 초음파 세정한 후, 30분 동안 UV 오존 세정하여 사용하였다. 상기 기판 상부에 2-TNATA를 진공 증착하여 60 nm 두께의 정공주입층을 형성하였다. 상기 정공주입층 상부에, α-NPD를 진공 증착하여 30 nm 두께의 정공수송층을 형성하였다. 상기 정공수송층 상부에 화학식 f로 표시되는 화합물 및 화학식 g로 표시되는 화합물(도핑율: 4wt%)를 진공 증착하여 30 nm두께의 발광층을 형성하였다. 이후, 상기 발광층 상부에 Alq3 화합물을 25 nm의 두께로 진공증착하여 전자수송층을 형성하였다. 상기 전자수송층 상부에 Liq 1 nm(전자주입층)과 Al 100 nm(캐소드)를 순차적으로 진공증착하여, 표 3에 표시된 바와 같은 유기발광소자를 제조하였다. 이를 비교샘플 1이라고 한다.
The anode was prepared by cutting Corning's 15 Ω / cm 2 (1000 Å) ITO glass substrate to a size of 25 mm × 25 mm × 0.7 mm, ultrasonically cleaning it in acetone isopropyl alcohol and pure water for 15 minutes each, UV ozone cleaning was used. 2-TNATA was vacuum deposited on the substrate to form a 60 nm thick hole injection layer. On top of the hole injection layer, α-NPD was vacuum deposited to form a hole transport layer having a thickness of 30 nm. A compound represented by Formula f and a compound represented by Formula g (doping ratio: 4 wt%) were vacuum-deposited on the hole transport layer to form a light emitting layer having a thickness of 30 nm. Then, an Alq 3 compound was vacuum deposited on the light emitting layer to a thickness of 25 nm to form an electron transporting layer. Liq 1 nm (electron injecting layer) and Al 100 nm (cathode) were sequentially vacuum-deposited on the electron transporting layer to produce an organic light emitting device as shown in Table 3. This is referred to as Comparative Sample 1.

<화학식 f> <화학식 g>    <Formula f> <Formula g>

Figure 112017005607886-pat00017
Figure 112017005607886-pat00018

Figure 112017005607886-pat00017
Figure 112017005607886-pat00018

비교예Comparative Example 2 ~ 4 2 to 4

정공 수송층으로 사용되는 α-NPD 대신 상기 화합물 d, e, 114 를 정공 수송층으로 각각 이용한 것을 제외하고는 상기 비교예 1과 동일한 방법으로 유기발광소자를 제조하여 표 3에 나타내었다. 이를 각각 비교예 2 내지 4 이라고 한다.
An organic light emitting device was prepared in the same manner as in Comparative Example 1 except that the above-mentioned compounds d, e, and 114 were used as a hole transport layer instead of? -NPD used as a hole transport layer. These are referred to as Comparative Examples 2 to 4, respectively.

비교예Comparative Example 5 5

상기 비교예 1 중, 정공 수송층 α-NPD와 발광층(화학식 f + 화학식 g -도핑율:4%) 사이에 화학식 d로 표시되는 화합물 d 를 전자차단 화합물로 사용하여, 다음과 같은 구조를 갖는 유기발광소자를 제작하였다: ITO/2-TNATA(60 nm)/α-NPD(30 nm)/ 화합물 d(10nm)/ 화합물 f + 화합물 g(30 nm)/Alq3(25 nm)/Liq(1 nm)/ Al(100 nm).In Comparative Example 1, using a compound d represented by the formula (d) as an electron-blocking compound between the hole transport layer α-NPD and the light emitting layer (formula f + g - doping rate: 4%), A light emitting device was prepared: ITO / 2-TNATA (60 nm) /? -NPD (30 nm) / compound d (10 nm) / compound f + compound g (30 nm) / Alq 3 nm) / Al (100 nm).

애노드는 코닝(Corning)사의 15Ω/cm2 (1000Å) ITO 유리 기판을 25 mm x 25 mm x 0.7 mm크기로 잘라서 아세톤 이소프로필 알콜과 순수한 물 속에서 각 15분 동안 초음파 세정한 후, 30분 동안 UV 오존 세정하여 사용하였다. 상기 기판 상부에 2-TNATA를 진공 증착하여 60 nm 두께의 정공주입층을 형성하였다. 상기 정공주입층 상부에, α-NPD를 진공 증착하여 30 nm 두께의 정공수송층을 형성하였다. 상기 정공수송층 상부에 화합물 d를 10nm 두께로 증착하여 전자차단층을 형성하였다. 화학식 f로 표시되는 화합물f 및 화학식 g로 표시되는 화합물 g(도핑율: 4wt%)를 진공 증착하여 30 nm두께의 발광층을 형성하였다. 이후, 상기 발광층 상부에 Alq3 화합물을 25 nm의 두께로 진공증착하여 전자수송층을 형성하였다. 상기 전자수송층 상부에 Liq 1 nm(전자주입층)과 Al 100 nm(캐소드)를 순차적으로 진공증착하여, 표 3에 표시된 바와 같은 유기발광소자를 제조하였다. 이를 비교예 5 라고 한다.
The anode was prepared by cutting Corning's 15 Ω / cm 2 (1000 Å) ITO glass substrate to a size of 25 mm × 25 mm × 0.7 mm, ultrasonically cleaning it in acetone isopropyl alcohol and pure water for 15 minutes each, UV ozone cleaning was used. 2-TNATA was vacuum deposited on the substrate to form a 60 nm thick hole injection layer. On top of the hole injection layer, α-NPD was vacuum deposited to form a hole transport layer having a thickness of 30 nm. Compound d was deposited on the hole transport layer to a thickness of 10 nm to form an electron blocking layer. A compound f represented by the formula f and a compound g represented by the formula g (g doping ratio: 4 wt%) were vacuum deposited to form a light emitting layer with a thickness of 30 nm. Then, an Alq 3 compound was vacuum deposited on the light emitting layer to a thickness of 25 nm to form an electron transporting layer. Liq 1 nm (electron injecting layer) and Al 100 nm (cathode) were sequentially vacuum-deposited on the electron transporting layer to produce an organic light emitting device as shown in Table 3. This is referred to as Comparative Example 5.

실시예Example 1 ~ 8 1 to 8

정공 수송층으로 사용되는 α-NPD 대신 상기 표1에 개시된 화합물 6, 7, 13, 31, 62, 78, 81, 88 들을 승화 정제 과정을 거쳐 정공 수송층으로 각각 이용한 것을 제외하고는 상기 비교예 1과 동일한 방법으로 유기발광소자를 제조하여 표 3에 나타내었다. 이를 각각 실시예 1 내지 8 이라고 한다.
Except that the compounds 6, 7, 13, 31, 62, 78, 81, and 88 shown in Table 1 were used as a hole transport layer through sublimation purification, respectively, instead of? -NPD used as a hole transport layer. An organic light emitting device was fabricated in the same manner as in Table 3. These are referred to as Examples 1 to 8, respectively.

실시예Example 9 ~ 11 9-11

비교예 4 중, 전자 차단층으로 사용되는 화학식 d 대신 상기 표1에 개시된 화합물 98, 108, 112 들을 승화 정제 과정을 거쳐 전자 차단층으로 각각 이용한 것을 제외하고는 상기 비교예 4와 동일한 방법으로 유기발광소자를 제조하여 표 3에 나타내었다. 이를 각각 실시예 9 내지 11 이라고 한다.
In the same manner as in Comparative Example 4, except that Compound 98, 108, and 112 shown in Table 1 were used as an electron blocking layer through a sublimation purification process in place of Compound d used as an electron blocking layer in Comparative Example 4, A light emitting device was prepared and shown in Table 3. These are referred to as Examples 9 to 11, respectively.

평가예Evaluation example 1:  One: 비교예Comparative Example 1~5 및  1 to 5 and 실시예Example 1~11의 발광 특성 및 수명 평가 Evaluation of luminescence characteristics and life span of 1 to 11

비교예 1~5 및 실시예 1~11 에 대하여, Keithley sourcemeter “2400”, KONIKA MINOLTA “CS-2000”을 이용하여 발광휘도, 발광효율을 평가하였다. Light emission luminance and luminous efficiency were evaluated using Keithley source meter "2400" and KONIKA MINOLTA "CS-2000" for Comparative Examples 1 to 5 and Examples 1 to 11.

맥사이언스사의 M6000S 수명측정장치를 이용하여 초기휘도 (L0) 1000 nit를 기준으로 휘도 (L)가 97%에 도달하는 시간(LT97)을 각각 측정하여, 그 결과를 하기 표 3 에 나타내었다.
The time (LT97) at which the luminance (L) reached 97% on the basis of the initial luminance (L 0 ) of 1000 nits was measured using a M6000S lifetime measuring device of Mac Science Inc., and the results are shown in Table 3 below.

샘플 No.Sample No. 정공수송
화합물
No.
Hole transportation
compound
No.
전자차단
화합물
No.
Electronic blocking
compound
No.
전압
OP. V
Voltage
OP. V
휘도
[cd/m2]
Luminance
[cd / m 2 ]
효율
[cd/A]
efficiency
[cd / A]
수명
[LT97]
life span
[LT97]
비교예 1Comparative Example 1 α-NPDalpha -NPD -- 4.64.6 515515 5.25.2 16.016.0 비교예 2Comparative Example 2 dd -- 4.54.5 526526 5.35.3 25.425.4 비교예 3Comparative Example 3 ee -- 4.54.5 525525 5.35.3 22.122.1 비교예 4Comparative Example 4 114114 -- 4.84.8 512512 5.15.1 14.214.2 실시예 1Example 1 66 -- 4.24.2 551551 5.55.5 68.768.7 실시예 2Example 2 77 -- 4.24.2 571571 5.75.7 42.242.2 실시예 3Example 3 1313 -- 3.93.9 555555 5.65.6 56.756.7 실시예 4Example 4 3131 -- 3.93.9 550550 5.55.5 55.855.8 실시예 5Example 5 6262 -- 4.14.1 549549 5.55.5 59.959.9 실시예 6Example 6 7878 -- 4.24.2 541541 5.45.4 62.462.4 실시예 7Example 7 8181 -- 4.14.1 568568 5.75.7 70.270.2 실시예 8Example 8 8888 -- 4.04.0 555555 5.65.6 61.761.7 비교예 5Comparative Example 5 α-NPDalpha -NPD dd 4.34.3 594594 5.95.9 80.380.3 실시예 9Example 9 α-NPDalpha -NPD 9898 4.34.3 601601 6.06.0 108.2108.2 실시예 10Example 10 α-NPDalpha -NPD 108108 4.24.2 621621 6.26.2 82.282.2 실시예 11Example 11 α-NPDalpha -NPD 112112 4.24.2 611611 6.16.1 96.796.7

상기 표 3 에 보여지는 바와 같이 실시예 1 내지 11 은 비교예 1 내지 5 에 비하여 저전압 구동 및 향상된 발광 특성을 나타내었다.
As shown in Table 3, Examples 1 to 11 exhibited low voltage driving and improved luminescent characteristics as compared with Comparative Examples 1 to 5.

상기 표 3에 보여지는 바와 같이 실시예 1 내지 11 은 비교예 1 내지 5 에 비하여 향상된 수명 특성을 나타내었다. 특히 플루오렌의 1, 3위치에 아릴기 치환되면서 플로렌, 디벤조퓨란 또는 디벤조티오펜 아민 유도체의 상기 화합물들이 우수한 성능과 수명을 나타내었다.
As shown in Table 3, Examples 1 to 11 exhibited improved life characteristics compared to Comparative Examples 1 to 5. Particularly, these compounds of fluorene, dibenzofurane or dibenzothiophenamine derivatives exhibit excellent performance and life span, with aryl groups substituted at the 1 and 3 positions of fluorene.

이상에서 본 발명의 바람직한 실시예들에 대하여 상세하게 설명하였지만 본 발명의 권리 범위는 이에 한정되는 것은 아니고 다음의 청구 범위에서 정의하고 있는 본 발명의 기본 개념을 이용한 당업자의 여러 변형 및 개량 형태 또한 본 발명의 권리 범위에 속하는 것이다.
While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is to be understood that the invention is not limited to the disclosed exemplary embodiments, And falls within the scope of the invention.

Claims (10)

하기 1-7, 9-14, 19-21, 23-29, 31-50, 52-56, 58-66, 69-77, 79-81, 83-94, 96, 98-109 및 111-113 중의 어느 하나인 디아릴플루오렌 아민 유도체 유기화합물.
Figure 112018501914700-pat00030
Figure 112018501914700-pat00031

Figure 112018501914700-pat00032

Figure 112018501914700-pat00033

Figure 112018501914700-pat00034

Gt; 1-7, 9-14, 19-21, 23-29, 31-50, 52-56, 58-66, 69-77, 79-81, 83-94, 96, 98-109 and 111-113 Wherein the organic compound is a diarylfluorene amine derivative organic compound.
Figure 112018501914700-pat00030
Figure 112018501914700-pat00031

Figure 112018501914700-pat00032

Figure 112018501914700-pat00033

Figure 112018501914700-pat00034

삭제delete 삭제delete 삭제delete 삭제delete 삭제delete 제1항에 있어서,
상기 디아릴플루오렌 아민 유도체 유기화합물은 유기전기발광소자용 재료 중 정공주입층, 정공수송층, 전자차단층, 발광층, 정공차단층, 전자수송층 또는 전자주입층의 물질로 사용되는
디아릴플루오렌 아민 유도체 유기화합물.
The method according to claim 1,
The diarylfluorene amine derivative organic compound is used as a material for a hole injecting layer, a hole transporting layer, an electron blocking layer, a light emitting layer, a hole blocking layer, an electron transporting layer, or an electron injecting layer in a material for an organic EL device
Diarylfluorene amine derivatives Organic compounds.
음극과 양극 사이에 적어도 하나의 유기 박막층이 협지되어 있는 유기 전계 발광 소자에 있어서, 상기 유기 박막층은 적어도 하나의 발광층을 포함하는 다층 구조이고, 상기 발광층 또는 상기 발광층 이외의 상기 유기 박막층 내의 적어도 하나의 층이 제1항에 따른 상기 디아릴플루오렌 아민 유도체 유기화합물을 단독 또는 2종 이상의 혼합물을 포함하는 유기 전계 발광 소자.
At least one organic thin film layer sandwiched between a cathode and an anode, wherein the organic thin film layer has a multi-layer structure including at least one light emitting layer, and at least one organic thin film layer in the organic thin film layer other than the light emitting layer or the light emitting layer Wherein the layer comprises the diarylfluorene amine derivative organic compound according to claim 1 alone or a mixture of two or more thereof.
제8항에 있어서,
상기 유기 박막층은 양극과 발광층 사이에 개재되며, 정공주입층, 정공수송층, 정공주입 기능 및 정공수송 기능을 동시에 갖는 기능층, 버퍼층 및 전자차단층 중 적어도 하나를 포함한 정공 수송 영역을 포함하는
유기 전계 발광 소자.
9. The method of claim 8,
The organic thin film layer includes a hole transporting region interposed between the anode and the light emitting layer and including at least one of a hole injecting layer, a hole transporting layer, a functional layer having both a hole injecting function and a hole transporting function, a buffer layer,
Organic electroluminescent device.
제9항에 있어서,
상기 정공 수송 영역은 p-도펀트를 더 포함하는
유기 전계 발광 소자.
10. The method of claim 9,
Wherein the hole transport region further comprises a p-dopant
Organic electroluminescent device.
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