JP2014140066A - 有機エレクトロルミネッセンス素子材料 - Google Patents
有機エレクトロルミネッセンス素子材料 Download PDFInfo
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- JP2014140066A JP2014140066A JP2014076601A JP2014076601A JP2014140066A JP 2014140066 A JP2014140066 A JP 2014140066A JP 2014076601 A JP2014076601 A JP 2014076601A JP 2014076601 A JP2014076601 A JP 2014076601A JP 2014140066 A JP2014140066 A JP 2014140066A
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- organic
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- light
- light emitting
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- 239000000463 material Substances 0.000 title claims abstract description 79
- 150000004696 coordination complex Chemical class 0.000 claims abstract description 17
- 125000003118 aryl group Chemical group 0.000 claims description 45
- 229910052757 nitrogen Inorganic materials 0.000 claims description 32
- 125000006615 aromatic heterocyclic group Chemical group 0.000 claims description 28
- 229910052799 carbon Inorganic materials 0.000 claims description 18
- 238000005401 electroluminescence Methods 0.000 claims description 18
- 125000004433 nitrogen atom Chemical group N* 0.000 claims description 18
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 claims description 14
- 125000001424 substituent group Chemical group 0.000 claims description 14
- 229910052741 iridium Inorganic materials 0.000 claims description 8
- GKOZUEZYRPOHIO-UHFFFAOYSA-N iridium atom Chemical group [Ir] GKOZUEZYRPOHIO-UHFFFAOYSA-N 0.000 claims description 8
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- APFVFJFRJDLVQX-UHFFFAOYSA-N indium atom Chemical compound [In] APFVFJFRJDLVQX-UHFFFAOYSA-N 0.000 description 3
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- 125000001997 phenyl group Chemical group [H]C1=C([H])C([H])=C(*)C([H])=C1[H] 0.000 description 3
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- CIOAGBVUUVVLOB-UHFFFAOYSA-N strontium atom Chemical compound [Sr] CIOAGBVUUVVLOB-UHFFFAOYSA-N 0.000 description 2
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- TVIVIEFSHFOWTE-UHFFFAOYSA-K tri(quinolin-8-yloxy)alumane Chemical compound [Al+3].C1=CN=C2C([O-])=CC=CC2=C1.C1=CN=C2C([O-])=CC=CC2=C1.C1=CN=C2C([O-])=CC=CC2=C1 TVIVIEFSHFOWTE-UHFFFAOYSA-K 0.000 description 2
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- UWRZIZXBOLBCON-VOTSOKGWSA-N (e)-2-phenylethenamine Chemical class N\C=C\C1=CC=CC=C1 UWRZIZXBOLBCON-VOTSOKGWSA-N 0.000 description 1
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- 235000011152 sodium sulphate Nutrition 0.000 description 1
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- 238000003860 storage Methods 0.000 description 1
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- YRGLXIVYESZPLQ-UHFFFAOYSA-I tantalum pentafluoride Chemical compound F[Ta](F)(F)(F)F YRGLXIVYESZPLQ-UHFFFAOYSA-I 0.000 description 1
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- 238000002834 transmittance Methods 0.000 description 1
- 125000002889 tridecyl group Chemical group [H]C([*])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])[H] 0.000 description 1
- 125000006617 triphenylamine group Chemical group 0.000 description 1
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- PXXNTAGJWPJAGM-UHFFFAOYSA-N vertaline Natural products C1C2C=3C=C(OC)C(OC)=CC=3OC(C=C3)=CC=C3CCC(=O)OC1CC1N2CCCC1 PXXNTAGJWPJAGM-UHFFFAOYSA-N 0.000 description 1
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- 125000005023 xylyl group Chemical group 0.000 description 1
- 229910052725 zinc Inorganic materials 0.000 description 1
- 239000011701 zinc Substances 0.000 description 1
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Abstract
Description
本発明の有機EL素子材料について説明する。
本発明でりん光発光ユニットとは、図5で表されるような、金属原子MとA環とB環から成る配位子から構成されるユニットのことをいう。
芳香族や芳香族複素環から成る化合物で、キャリア輸送をするユニットである。一般的な有機ELの電子輸送材料、正孔輸送材料、ホスト材料のことを指し、好ましくは、前記一般式(4)、(5)で表される化合物である。
本発明の有機EL素子材料(金属錯体)は、上記一般式(1)〜(3)で表される部分構造を有する、または該一般式(1)〜(3)の各々の互変異性体で表される構造を有する(具体的には、配位子として有することである)ことが特徴であり、該金属錯体の配位子の全てが、前記一般式(1)〜(3)で表される構造、または該一般式(1)〜(3)の各々の互変異性体で表される構造のみで構成されていてもよく、従来公知の金属錯体形成に用いられる、所謂配位子として当該業者が周知の配位子(配位化合物ともいう)を必要に応じて配位子として有していてもよい。
本発明で金属錯体の形成に用いられる金属としては、元素周期表の8〜10族の遷移金属元素(単に遷移金属ともいう)が用いられるが、中でもイリジウム、白金が好ましい。
一般式(1)において、Tは前記りん光発光ユニットを表し、Ar1は芳香族環または芳香族複素環を表し、H1は前記キャリア輸送ユニットを表し、n1は0〜10の整数を表す。
一般式(2)において、X1、X2は各々独立に炭素原子または窒素原子を表し、A1はX1と炭素原子と共に芳香族環または芳香族複素環を形成する原子群を表し、A2はX2と窒素原子と共に芳香族環または芳香族複素環を形成する原子群を表し、Ar1は芳香族環または芳香族複素環を表し、H1は前記キャリア輸送ユニットを表し、n1は0〜10の整数を表し、Mは前記元素周期表における8〜10族の金属を表す。
一般式(3)において、X1、X2は各々独立に炭素原子または窒素原子を表し、A1はX1と炭素原子と共に芳香族環または芳香族複素環を形成する原子群を表し、A2はX2と窒素原子と共に芳香族環または芳香族複素環を形成する原子群を表し、Ar1は芳香族環または芳香族複素環を表し、H1は前記キャリア輸送ユニットを表し、n1は0〜10の整数を表し、Mは前記元素周期表における8〜10族の金属を表す。
本発明の有機EL素子の構成層について説明する。本発明において、有機EL素子の層構成の好ましい具体例を以下に示すが、本発明はこれらに限定されない。
(i)陽極/発光層/電子輸送層/陰極
(ii)陽極/正孔輸送層/発光層/電子輸送層/陰極
(iii)陽極/正孔輸送層/発光層/正孔阻止層/電子輸送層/陰極
(iv)陽極/正孔輸送層/発光層/正孔阻止層/電子輸送層/陰極バッファー層/陰極
(v)陽極/陽極バッファー層/正孔輸送層/発光層/正孔阻止層/電子輸送層/陰極バッファー層/陰極
本発明の有機EL素子においては、第1発光波長(発光極大波長)が400〜500nmの範囲内であることが好ましく、430〜480nmがより好ましい。また、発光極大波長が510〜550nmの緑色発光層、発光極大波長が600〜640nmの赤色発光層を用いた表示装置であることが好ましい。また、これらの少なくとも3層の発光層を積層して白色発光層としたものであってもよい。さらに、発光層間には非発光性の中間層を有していてもよい。本発明の有機EL素子としては白色発光層であることが好ましく、これらを用いた照明装置であることが好ましい。
本発明に係る発光層は、電極または電子輸送層、正孔輸送層から注入されてくる電子及び正孔が再結合して発光する層であり、発光する部分は発光層の層内であっても発光層と隣接層との界面であってもよい。
本発明に用いられるホスト化合物について説明する。
本発明に係る発光ドーパントについて説明する。
本発明に係るリン光ドーパントについて説明する。
蛍光ドーパント(蛍光性化合物)としては、クマリン系色素、ピラン系色素、シアニン系色素、クロコニウム系色素、スクアリウム系色素、オキソベンツアントラセン系色素、フルオレセイン系色素、ローダミン系色素、ピリリウム系色素、ペリレン系色素、スチルベン系色素、ポリチオフェン系色素、または希土類錯体系蛍光体等が挙げられる。
注入層は必要に応じて設け、電子注入層と正孔注入層があり、上記のごとく陽極と発光層または正孔輸送層の間、及び陰極と発光層または電子輸送層との間に存在させてもよい。
阻止層は、上記のごとく有機化合物薄膜の基本構成層の他に必要に応じて設けられるものである。例えば、特開平11−204258号公報、同11−204359号公報、及び「有機EL素子とその工業化最前線(1998年11月30日エヌ・ティー・エス社発行)」の237頁等に記載されている正孔阻止(ホールブロック)層がある。
正孔輸送層とは正孔を輸送する機能を有する正孔輸送材料からなり、広い意味で正孔注入層、電子阻止層も正孔輸送層に含まれる。正孔輸送層は単層または複数層設けることができる。
電子輸送層とは電子を輸送する機能を有する材料からなり、広い意味で電子注入層、正孔阻止層も電子輸送層に含まれる。電子輸送層は単層または複数層設けることができる。
有機EL素子における陽極としては、仕事関数の大きい(4eV以上)金属、合金、電気伝導性化合物及びこれらの混合物を電極物質とするものが好ましく用いられる。このような電極物質の具体例としては、Au等の金属、CuI、インジウムチンオキシド(ITO)、SnO2、ZnO等の導電性透明材料が挙げられる。また、IDIXO(In2O3−ZnO)等非晶質で透明導電膜を作製可能な材料を用いてもよい。陽極はこれらの電極物質を蒸着やスパッタリング等の方法により薄膜を形成させ、フォトリソグラフィー法で所望の形状のパターンを形成してもよく、あるいはパターン精度をあまり必要としない場合は(100μm以上程度)、上記電極物質の蒸着やスパッタリング時に所望の形状のマスクを介してパターンを形成してもよい。あるいは、有機導電性化合物のように塗布可能な物質を用いる場合には、印刷方式、コーティング方式等湿式製膜法を用いることもできる。この陽極より発光を取り出す場合には、透過率を10%より大きくすることが望ましく、また陽極としてのシート抵抗は数百Ω/□以下が好ましい。さらに膜厚は材料にもよるが、通常は、10〜1000nmの範囲であり、好ましくは10〜200nmの範囲で選ばれる。
一方、陰極としては仕事関数の小さい(4eV以下)金属(電子注入性金属と称する)、合金、電気伝導性化合物及びこれらの混合物を電極物質とするものが用いられる。このような電極物質の具体例としては、ナトリウム、ナトリウム−カリウム合金、マグネシウム、リチウム、マグネシウム/銅混合物、マグネシウム/銀混合物、マグネシウム/アルミニウム混合物、マグネシウム/インジウム混合物、アルミニウム/酸化アルミニウム(Al2O3)混合物、インジウム、リチウム/アルミニウム混合物、希土類金属等が挙げられる。これらの中で、電子注入性及び酸化等に対する耐久性の点から、電子注入性金属とこれより仕事関数の値が大きく安定な金属である第二金属との混合物、例えば、マグネシウム/銀混合物、マグネシウム/アルミニウム混合物、マグネシウム/インジウム混合物、アルミニウム/酸化アルミニウム(Al2O3)混合物、リチウム/アルミニウム混合物、アルミニウム等が好適である。陰極はこれらの電極物質を蒸着やスパッタリング等の方法により薄膜を形成させることにより、作製することができる。また、陰極としてのシート抵抗は数百Ω/□以下が好ましく、膜厚は通常10nm〜5μm、好ましくは50nm〜200nmの範囲で選ばれる。尚、発光した光を透過させるため、有機EL素子の陽極または陰極のいずれか一方が透明または半透明であれば発光輝度が向上し好都合である。
本発明の有機EL素子に用いることのできる支持基板(以下、基体、基板、基材、支持体等とも言う)としては、ガラス、プラスチック等の種類には特に限定はなく、また透明であっても不透明であってもよい。支持基板側から光を取り出す場合には、支持基板は透明であることが好ましい。好ましく用いられる透明な支持基板としては、ガラス、石英、透明樹脂フィルムを挙げることができる。特に好ましい支持基板は、有機EL素子にフレキシブル性を与えることが可能な樹脂フィルムである。
本発明に用いられる封止手段としては、例えば、封止部材と電極、支持基板とを接着剤で接着する方法を挙げることができる。
有機層を挟み支持基板と対向する側の前記封止膜、あるいは前記封止用フィルムの外側に、素子の機械的強度を高めるために保護膜、あるいは保護板を設けてもよい。特に封止が前記封止膜により行われている場合には、その機械的強度は必ずしも高くないため、このような保護膜、保護板を設けることが好ましい。これに使用することができる材料としては、前記封止に用いたのと同様なガラス板、ポリマー板・フィルム、金属板・フィルム等を用いることができるが、軽量かつ薄膜化ということからポリマーフィルムを用いることが好ましい。
有機EL素子は空気よりも屈折率の高い(屈折率が1.7〜2.1程度)層の内部で発光し、発光層で発生した光のうち15%から20%程度の光しか取り出せないことが一般的に言われている。これは、臨界角以上の角度θで界面(透明基板と空気との界面)に入射する光は、全反射を起こし素子外部に取り出すことができないことや、透明電極ないし発光層と透明基板との間で光が全反射を起こし、光が透明電極ないし発光層を導波し、結果として光が素子側面方向に逃げるためである。
本発明の有機EL素子は基板の光取り出し側に、例えば、マイクロレンズアレイ状の構造を設けるように加工したり、あるいは所謂集光シートと組み合わせることにより、特定方向、例えば、素子発光面に対し正面方向に集光することにより、特定方向上の輝度を高めることができる。
本発明の有機EL素子の作製方法の一例として、陽極/正孔注入層/正孔輸送層/発光層/電子輸送層/電子注入層/陰極からなる有機EL素子の作製法を説明する。
本発明の有機EL素子は、表示装置、ディスプレイ、各種発光光源として用いることができる。発光光源として、例えば、照明装置(家庭用照明、車内照明)、時計や液晶用バックライト、看板広告、信号機、光記憶媒体の光源、電子写真複写機の光源、光通信処理機の光源、光センサーの光源等が挙げられるがこれに限定するものではないが、特に液晶表示装置のバックライト、照明用光源としての用途に有効に用いることができる。
《有機EL素子1−1の作製》
陽極として100mm×100mm×1.1mmのガラス基板上にITO(インジウムチンオキシド)を100nm製膜した基板(NHテクノグラス社製NA−45)にパターニングを行った後、このITO透明電極を設けた透明支持基板をイソプロピルアルコールで超音波洗浄し、乾燥窒素ガスで乾燥し、UVオゾン洗浄を5分間行った。
有機EL素子1−1の作製において、発光層のドーパント化合物D−1、ホスト化合物H−1を表1に示す化合物に置き換えた以外は同様にして、有機EL素子1−2〜1−19を作製した。
得られた有機EL素子の評価に際しては、作製後の各有機EL素子の非発光面をガラスケースで覆い、厚み300μmのガラス基板を封止用基板として用いて、周囲にシール材としてエポキシ系光硬化型接着剤(東亞合成社製ラックストラックLC0629B)を適用し、これを上記陰極上に重ねて前記透明支持基板と密着させ、ガラス基板側からUV光を照射して、硬化させて、封止して、図3、図4に示すような照明装置を形成して評価した。
有機EL素子を室温(約23〜25℃)、2.5mA/cm2の定電流条件下による点灯を行い、点灯開始直後の発光輝度(L)[cd/m2]を測定することにより、外部取り出し量子効率(η)を算出した。ここで、発光輝度の測定はCS−1000(コニカミノルタセンシング製)を用いた。外部取り出し量子効率は有機EL素子1−19を100とする相対値で表した。
駆動電圧とは、2.5mA/cm2で駆動した時の電圧で、比較の有機EL素子1−19の駆動電圧(V)からの差を求めた。
評価の結果を表1に示す。
《有機EL素子2−1の作製》
陽極として100mm×100mm×1.1mmのガラス基板上にITO(インジウムチンオキシド)を100nm製膜した基板(NHテクノグラス社製NA−45)にパターニングを行った後、このITO透明電極を設けた透明支持基板をイソプロピルアルコールで超音波洗浄し、乾燥窒素ガスで乾燥し、UVオゾン洗浄を5分間行った。
有機EL素子2−1の作製において、発光層のドーパント化合物D−1、ホスト化合物H−1を表2に示す化合物に置き換えた以外は同様にして、有機EL素子2−2〜2−13を作製した。
得られた有機EL素子について実施例1と同様に評価した。なお、外部取り出し量子効率は有機EL素子2−13を100とする相対値で表し、駆動電圧は有機EL素子2−13の駆動電圧(V)からの差を求めた。
《白色発光素子及び白色照明装置の作製》
陽極として100mm×100mm×1.1mmのガラス基板上にITO(インジウムチンオキシド)を100nm製膜した基板(NHテクノグラス社製NA−45)にパターニングを行った後、このITO透明電極を設けた透明支持基板をイソプロピルアルコールで超音波洗浄し、乾燥窒素ガスで乾燥し、UVオゾン洗浄を5分間行った。
3 画素
5 走査線
6 データ線
7 電源ライン
10 有機EL素子
11 スイッチングトランジスタ
12 駆動トランジスタ
13 コンデンサ
A 表示部
B 制御部
107 透明電極付きガラス基板
106 有機EL層
105 陰極
102 ガラスカバー
108 窒素ガス
109 捕水剤
Claims (1)
- 下記一般式(2a)で表される金属錯体であることを特徴とする有機エレクトロルミネッセンス素子材料。
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JP5151031B2 (ja) * | 2006-01-05 | 2013-02-27 | コニカミノルタホールディングス株式会社 | 有機エレクトロルミネッセンス素子、表示装置及び照明装置 |
WO2007097149A1 (ja) * | 2006-02-20 | 2007-08-30 | Konica Minolta Holdings, Inc. | 有機エレクトロルミネッセンス素子、白色発光素子、表示装置、及び照明装置 |
JP4964482B2 (ja) * | 2006-03-27 | 2012-06-27 | 昭和電工株式会社 | 高分子発光材料、有機エレクトロルミネッセンス素子および表示装置 |
JP5245105B2 (ja) * | 2006-10-19 | 2013-07-24 | コニカミノルタ株式会社 | 有機エレクトロルミネッセンス素子材料、有機エレクトロルミネッセンス素子、表示装置及び照明装置 |
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JP2002332291A (ja) * | 2001-03-08 | 2002-11-22 | Canon Inc | 金属配位化合物、電界発光素子及び表示装置 |
JP2009019121A (ja) * | 2007-07-12 | 2009-01-29 | Konica Minolta Holdings Inc | 有機エレクトロルミネッセンス材料、有機エレクトロルミネッセンス素子、表示装置及び照明装置 |
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