WO2012137810A1 - ネマチック液晶組成物及びこれを用いた液晶表示素子 - Google Patents
ネマチック液晶組成物及びこれを用いた液晶表示素子 Download PDFInfo
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- WO2012137810A1 WO2012137810A1 PCT/JP2012/059171 JP2012059171W WO2012137810A1 WO 2012137810 A1 WO2012137810 A1 WO 2012137810A1 JP 2012059171 W JP2012059171 W JP 2012059171W WO 2012137810 A1 WO2012137810 A1 WO 2012137810A1
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- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
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- C09K19/12—Non-steroidal liquid crystal compounds containing at least two non-condensed rings containing at least two benzene rings at least two benzene rings directly linked, e.g. biphenyls
- C09K2019/121—Compounds containing phenylene-1,4-diyl (-Ph-)
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- C09K19/3001—Cyclohexane rings
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- C09K19/3003—Compounds containing at least two rings in which the different rings are directly linked (covalent bond)
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Definitions
- the present invention relates to a nematic liquid crystal composition having a negative dielectric anisotropy ( ⁇ ) useful as a liquid crystal display material, and a liquid crystal display device using the same.
- Liquid crystal display elements are used in clocks, calculators, various household electrical devices, measuring devices, automotive panels, word processors, electronic notebooks, printers, computers, televisions, and the like.
- Typical liquid crystal display methods include TN (twisted nematic), STN (super twisted nematic), DS (dynamic light scattering), GH (guest / host), and IPS (in-plane switching).
- Type OCB (optical compensation birefringence) type, ECB (voltage controlled birefringence) type, VA (vertical alignment) type, CSH (color super homeotropic) type, FLC (ferroelectric liquid crystal), etc.
- Examples of the driving method include static driving, multiplex driving, simple matrix method, active matrix (AM) method driven by TFT (thin film transistor), TFD (thin film diode), and the like.
- the IPS type, ECB type, VA type, CSH type, and the like have a feature that a liquid crystal material having a negative value of ⁇ is used.
- the VA type display method by AM driving is used for a display element that requires a high speed and a wide viewing angle, such as a television.
- a nematic liquid crystal composition used for a display method such as a VA type is required to have a low voltage drive, a high-speed response, and a wide operating temperature range. That is, ⁇ is negative, the absolute value is large, the viscosity is low, and a high nematic phase-isotropic liquid phase transition temperature (T ni ) is required. Further, from the setting of ⁇ n ⁇ d, which is the product of refractive index anisotropy ( ⁇ n) and cell gap (d), it is necessary to adjust ⁇ n of the liquid crystal material to an appropriate range according to the cell gap. In addition, when applying a liquid crystal display element to a television or the like, since high-speed response is important, a liquid crystal material having a low viscosity ( ⁇ ) is required.
- a liquid crystal composition using the following liquid crystal compounds (A) and (B) having a 2,3-difluorophenylene skeleton (see Patent Document 1) as a liquid crystal material having a negative ⁇ is disclosed.
- liquid crystal compounds (C) and (D) are used as compounds having ⁇ of approximately 0.
- this liquid crystal composition is used in a liquid crystal composition that requires a high-speed response such as a liquid crystal television. A sufficiently low viscosity has not been achieved.
- a liquid crystal composition using a compound represented by the formula (G) has already been disclosed (see Patent Document 4), but this liquid crystal composition also contains an alkenyl compound as in the above liquid crystal compound (F). Since it is a liquid crystal composition containing a compound, there is a problem that display defects such as image sticking and display unevenness are likely to occur.
- JP-A-8-104869 European Patent Application No. 0474402 JP 2006-37054 A JP 2001-354967 A JP 2008-144135 A WO2007 / 077872
- the problem to be solved by the present invention is to provide a liquid crystal composition having a sufficiently small ⁇ , a negative ⁇ and a large absolute value without lowering ⁇ n and T ni , and a VA type using the same
- An object of the present invention is to provide a liquid crystal display element in which no display defects are suppressed or suppressed.
- the present inventor has studied various biphenyl derivatives and fluorobenzene derivatives, and found that the above problem can be solved by combining specific compounds, and has completed the present invention.
- the present invention uses the formula (I) as the first component
- a liquid crystal display device using the same is provided.
- the liquid crystal composition having a negative ⁇ according to the present invention has a sufficiently low viscosity without lowering ⁇ n and T ni , so a VA-type liquid crystal display device using the liquid crystal composition has a high-speed response and suppresses display defects. Is very useful.
- the content is preferably 5 to 25%, and the lower limit thereof is preferably 5%, preferably 8%, preferably 10%, preferably 11%, As an upper limit, 20% is preferable, 18% is preferable, and 15% is preferable. More specifically, the content is preferably 10 to 25% in order to obtain a high ⁇ n, but the content is preferably 3 to 15% when emphasis is placed on the suppression of precipitation at low temperatures.
- the second component contains a compound having a negative ⁇ and an absolute value greater than 3, the content of which is preferably 10 to 90%, more preferably 20 to 80%, and 40 to 70%. Particularly preferred.
- the second component is represented by the general formulas (II-1) and (II-2)
- R 1 and R 2 are each independently an alkyl group having 1 to 10 carbon atoms, an alkoxyl group having 1 to 10 carbon atoms, an alkenyl group having 2 to 10 carbon atoms, or 2 to 10 carbon atoms. of represents alkenyloxy group
- R 1 and R present in the 2 one -CH 2 - or nonadjacent two or more -CH 2 - are each independently -O- and / or -S-
- one or two or more hydrogen atoms present in R 1 and R 2 may be independently substituted with a fluorine atom or a chlorine atom
- ring A and ring B are each Independently trans-1,4-cyclohexylene group, 1,4-phenylene group, 2-fluoro-1,4-phenylene group, 3-fluoro-1,4-phenylene group, 3,5-difluoro-1 , 4-phenylene group, 2,3- Difluoro-1,4-phenylene group, 1,4-cyclohexeny
- R 1 and R 2 in the formula are each independently more preferably a linear alkyl group having 1 to 5 carbon atoms, an alkoxyl group, an alkenyl group having 2 to 5 carbon atoms, or an alkenyloxy group, Particularly preferably, R 1 is an alkyl group having 1 to 5 carbon atoms, and R 2 is an alkoxyl group having 1 to 5 carbon atoms.
- p and q are each independently 0 or 1.
- Ring A and Ring B are each independently a trans-1,4-cyclohexylene group, 1,4-phenylene group, 2-fluoro-1,4-phenylene group, 3-fluoro-1,4-phenylene group, It is more preferably a 3,5-difluoro-1,4-phenylene group or a 2,3-difluoro-1,4-phenylene group, and a trans-1,4-cyclohexylene group or a 1,4-phenylene group It is particularly preferred.
- the liquid crystal composition of the present invention contains one or more second components, but preferably contains 2 to 10 types of second components.
- ⁇ at 25 ° C. is ⁇ 2.0 to ⁇ 6.0, more preferably ⁇ 2.5 to ⁇ 5.0, and particularly preferably ⁇ 2.5 to ⁇ 3.5.
- ⁇ n at 25 ° C. is 0.08 to 0.13, more preferably 0.09 to 0.13, and particularly preferably 0.10 to 0.12. More specifically, it is preferably 0.10 to 0.13 when dealing with a thin cell gap, and preferably 0.08 to 0.10 when dealing with a thick cell gap.
- the ⁇ at 20 ° C. is 10 to 30 mPa ⁇ s, more preferably 10 to 25 mPa ⁇ s, and particularly preferably 10 to 20 mPa ⁇ s.
- T ni is 60 ° C. to 120 ° C., more preferably 70 ° C. to 100 ° C., and particularly preferably 70 ° C. to 85 ° C.
- the compound represented by the general formula (II-1) is more preferably one or more selected from compounds represented by the general formulas (II-1A) and (II-1B).
- the compound represented by (II-2) is more preferably the general formula (II-2A).
- R 3 and R 4 each independently represents an alkyl group having 1 to 10 carbon atoms or an alkenyl group having 2 to 10 carbon atoms, and one or more hydrogen atoms present in R 3 and R 4. Each atom may be independently substituted with a fluorine atom.
- R 3 and R 4 are preferably each independently a linear alkyl group having 1 to 5 carbon atoms or an alkenyl group having 2 to 5 carbon atoms, preferably an alkyl group having 1 to 5 carbon atoms. It is particularly preferred that
- the compounds represented by the general formulas (II-1A), (II-1B) and (II-2A) may be used alone or represented by the general formulas (II-1A) and (II-1B).
- the compounds represented by general formulas (II-1A) and (II-2A) or the compounds represented by general formulas (II-1B) and (II-2A) may be combined, or all the compounds represented by general formulas (II-1A), (II-1B) and (II-2A) may be used in combination.
- the liquid crystal composition of the present invention further includes, as a third component, general formula (III-A) to general formula (III-J).
- R 5 is an alkyl group having 1 to 5 carbon atoms or an alkenyl group having 2 to 5 carbon atoms
- R 6 is an alkyl group having 1 to 5 carbon atoms, an alkoxyl group having 1 to 5 carbon atoms
- a carbon atom Represents an alkenyl group having 2 to 5 carbon atoms or an alkenyloxy group having 2 to 5 carbon atoms
- R 5 is an alkyl group having 1 to 5 carbon atoms
- R 6 is an alkyl group or carbon atom having 1 to 5 carbon atoms.
- the liquid crystal composition of the present invention preferably contains formula (I), general formula (II-1A), (II-2A) and general formula (III-A) at the same time.
- II-1B), (II-2A) and general formula (III-A) are preferably contained simultaneously.
- Formula (I), general formula (II-1A), (II-1B), (II-2A) And general formula (III-A) are particularly preferred.
- the liquid crystal composition of the present invention may contain a normal nematic liquid crystal, smectic liquid crystal, cholesteric liquid crystal, antioxidant, ultraviolet absorber, polymerizable monomer and the like in addition to the above-mentioned compounds.
- a polymerizable compound such as a biphenyl derivative or a terphenyl derivative is contained as a polymerizable monomer, and the content is preferably 0.01% to 2%.
- the fourth component is represented by the general formula (IV).
- R 7 and R 8 are each independently the following formulas (R-1) to (R-15):
- X 1 to X 8 each independently represents a trifluoromethyl group, a trifluoromethoxy group, a fluorine atom or a hydrogen atom. It is preferable to contain one or two or more polymerizable monomers represented by
- the structure of the biphenyl skeleton in general formula (IV) is more preferably formula (IV-11) to formula (IV-14), and particularly preferably formula (IV-11).
- a polymerizable compound containing a skeleton represented by the formulas (IV-11) to (IV-14) has an optimum orientation regulating force after polymerization, and a good orientation state can be obtained.
- a polymerizable compound-containing liquid crystal composition simultaneously containing formula (I), general formula (II-1A), (II-1B), (II-2A), general formula (III-A), and general formula (IV)
- the product achieves high ⁇ n and low viscosity, and when it is used to make a liquid crystal display element of PSA mode or PSVA mode, high-speed response can be realized from the narrow gap corresponding to high ⁇ n and the low viscosity of the liquid crystal composition. Also, there is an excellent feature that display unevenness is suppressed or does not occur at all.
- liquid crystal composition it is more effective to reduce the viscosity of the liquid crystal composition by containing a liquid crystal compound having an alkenyl group as a normal nematic liquid crystal or smectic liquid crystal, which is useful for high-speed response, but causes a decrease in VHR, resulting in poor display. Therefore, it is necessary to use properly depending on whether response speed is important or reliability is important.
- the content is preferably less than 10%, more preferably less than 5%, and particularly preferably not contained.
- not contained means that it is not actively added, means that it does not contain inevitably contained impurities such as impurities during production, and is preferably 0.5% or less, preferably 0.1% or less.
- the measurement limit (about 10 ppm in the measurement by gas chromatography) or less is preferable.
- liquid crystal composition containing a liquid crystal compound having a chlorine group has been disclosed, the reliability is remarkably impaired and a display defect is caused. For this reason, it is important to reduce or not contain the content of the liquid crystal compound having a chlorine group.
- the content is preferably less than 10%, more preferably less than 5%, and particularly preferably not contained.
- the term “not contained” means that it is not actively added, means that it does not contain inevitably contained impurities such as impurities during production, and is preferably 0.5% or less, preferably 0.1% or less.
- the measurement limit (about 10 ppm in the measurement by gas chromatography) or less is preferable.
- the liquid crystal display device using the liquid crystal composition of the present invention is useful for achieving both high-speed response and suppression of display failure, and is particularly useful for a liquid crystal display device for active matrix driving, including VA mode, PSVA mode, Applicable for PSA mode, IPS mode or ECB mode.
- the measured characteristics are as follows.
- T ni Nematic phase-isotropic liquid phase transition temperature (° C.) ⁇ n: refractive index anisotropy at 25 ° C. ⁇ : dielectric anisotropy at 25 ° C. ⁇ : viscosity at 20 ° C. (mPa ⁇ s) Example 1 The prepared liquid crystal composition and its physical property values are shown below.
- the physical properties of the nematic liquid crystal composition shown in Example 1 were T ni : 75.5 ° C., ⁇ n: 0.108, ⁇ : ⁇ 3.0, and ⁇ : 16.3 mPa ⁇ s. Moreover, it was 9.3 msec when the response speed of the liquid crystal display element using this liquid-crystal composition was measured. Furthermore, the voltage holding ratio (VHR) was measured and confirmed to have a high VHR.
- the cell thickness is 3.5 ⁇ m
- the alignment film is JALS2096
- the response speed measurement conditions are Von 5.5 V, Voff 1.0 V, measurement temperature 20 ° C.
- AUTRONIC-MELCHERS DMS301 is used. It was.
- VHR measurement conditions were a voltage of 5 V, a frequency of 60 Hz, a temperature of 60 ° C., and VHR-1 manufactured by Toyo Technica Co., Ltd. was used.
- the physical properties of the nematic liquid crystal composition shown in Comparative Example 1 were T ni : 74.7 ° C., ⁇ n: 0.109, ⁇ : ⁇ 3.0, and ⁇ : 17.3 mPa ⁇ s.
- 2% of the compound represented by the formula (I) is contained as in Example 2 described in Reference 6, the viscosity is higher than that in Example 1. Therefore, it can be seen that the inclusion of 5 to 20% of the formula (I) as claimed in the present invention is very important for obtaining the effects of the present invention. Moreover, it was 10.5 msec when the response speed of the liquid crystal display element using this liquid-crystal composition was measured.
- Comparative Example 2 In Comparative Example 1, an example of a liquid crystal display composition containing 2% of the compound represented by the formula (I) was shown, but the compound represented by the formula (I) was not used, and the number of carbon atoms in the side chain A liquid crystal composition was prepared in which the content of the compound of formula (III-F) in which R5 is pentyl group and R6 is methyl group was increased from 13% to 15%. The physical property values are shown.
- the nematic liquid crystal composition shown in Comparative Example 2 does not contain the formula (I) of the present invention, and the physical properties thereof are T ni : 75.0 ° C., ⁇ n: 0.109, ⁇ : ⁇ 3.0, ⁇ : 17 0.6 mPa ⁇ s.
- T ni , ⁇ n and ⁇ was almost the same value, but ⁇ increased by 6% in Comparative Example 1 and 7% in Comparative Example 2.
- a liquid crystal composition containing a compound having a negative ⁇ can improve ⁇ without lowering ⁇ n and T ni. I understood.
- Example 2 The prepared liquid crystal composition and its physical property values are shown below.
- Example 3 The physical properties of the nematic liquid crystal composition shown in Example 2 were T ni : 71.2 ° C., ⁇ n: 0.115, ⁇ : -2.7, and ⁇ : 15.5 mPa ⁇ s. (Example 3) The prepared liquid crystal composition and its physical property values are shown below.
- Example 3 The physical properties of the nematic liquid crystal composition shown in Example 3 were T ni : 75.3 ° C., ⁇ n: 0.095, ⁇ : -3.2, and ⁇ : 15.3 mPa ⁇ s.
- Example 4 With respect to 99.7% of the nematic liquid crystal composition shown in Example 1, the formula (IV-a)
- a polymerizable liquid crystal composition CLC-1 was prepared by adding 0.3% of the polymerizable compound represented by formula (II) and uniformly dissolving.
- the physical properties of CLC-1 were hardly different from those of the nematic liquid crystal composition shown in Example 1.
- CLC-1 was injected by a vacuum injection method into a cell with ITO coated with a polyimide alignment film that induces homeotropic alignment with a cell gap of 3.5 ⁇ m. After measuring the pretilt angle (crystal rotation method) of this cell, the liquid crystal cell is irradiated with ultraviolet light by a high pressure mercury lamp through a filter that cuts ultraviolet light of 320 nm or less while applying a rectangular wave of 1.8 V at a frequency of 1 kHz. did.
- the cell surface was adjusted to have an irradiation intensity of 10 mW / cm 2 and irradiated for 600 seconds to obtain a vertically aligned liquid crystal display element in which the polymerizable compound in the polymerizable liquid crystal composition was polymerized. It was confirmed that the alignment regulating force for the liquid crystal compound was generated by the polymerization of the polymerizable compound. Further, it was confirmed that the vertical alignment liquid crystal display element has excellent optical characteristics and high-speed response. (Example 5) With respect to 99.7% of the nematic liquid crystal composition shown in Example 1, the formula (IV-b)
- a polymerizable liquid crystal composition CLC-2 was prepared by adding 0.3% of the polymerizable compound represented by formula (II) and uniformly dissolving.
- the physical properties of CLC-2 were almost the same as those of the nematic liquid crystal composition shown in Example 1.
- CLC-2 was injected by vacuum injection into a cell with ITO coated with a polyimide alignment film that induces homeotropic alignment with a cell gap of 3.5 ⁇ m. After measuring the pretilt angle (crystal rotation method) of this cell, the liquid crystal cell is irradiated with ultraviolet light by a high pressure mercury lamp through a filter that cuts ultraviolet light of 320 nm or less while applying a rectangular wave of 1.8 V at a frequency of 1 kHz. did.
- the cell surface was adjusted to have an irradiation intensity of 10 mW / cm 2 and irradiated for 600 seconds to obtain a vertically aligned liquid crystal display element in which the polymerizable compound in the polymerizable liquid crystal composition was polymerized. It was confirmed that the alignment regulating force for the liquid crystal compound was generated by the polymerization of the polymerizable compound. Further, it was confirmed that the vertical alignment liquid crystal display element has excellent optical characteristics and high-speed response. (Example 6) With respect to 99.7% of the nematic liquid crystal composition shown in Example 1, the formula (IV-c)
- a polymerizable liquid crystal composition CLC-3 was prepared by adding 0.3% of the polymerizable compound represented by formula (II) and dissolving it uniformly.
- the physical properties of CLC-3 were almost the same as those of the nematic liquid crystal composition shown in Example 1.
- CLC-3 was injected by vacuum injection into a cell with ITO coated with a polyimide alignment film that induces homeotropic alignment with a cell gap of 3.5 ⁇ m. After measuring the pretilt angle (crystal rotation method) of this cell, the liquid crystal cell is irradiated with ultraviolet light by a high pressure mercury lamp through a filter that cuts ultraviolet light of 320 nm or less while applying a rectangular wave of 1.8 V at a frequency of 1 kHz. did.
- the cell surface was adjusted to have an irradiation intensity of 10 mW / cm 2 and irradiated for 600 seconds to obtain a vertically aligned liquid crystal display element in which the polymerizable compound in the polymerizable liquid crystal composition was polymerized. It was confirmed that the alignment regulating force for the liquid crystal compound was generated by the polymerization of the polymerizable compound. In addition, it was confirmed that the vertically aligned liquid crystal display element has excellent optical characteristics and high-speed response.
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Abstract
Description
R3及びR4は、それぞれ独立的に直鎖状の炭素原子数1から5のアルキル基又は炭素原子数2から5のアルケニル基であることがより好ましく、炭素原子数1から5のアルキル基であることが特に好ましい。
Δn :25℃における屈折率異方性
Δε :25℃における誘電率異方性
η :20℃における粘度(mPa・s)
(実施例1)
以下に、調製した液晶組成物とその物性値を示す。
(比較例1)
以下に、調製した液晶組成物とその物性値を示す。
(比較例2)
比較例1では式(I)で表される化合物を2%含有する液晶表示組成物の例を示したが、この式(I)で表される化合物を使用せず、側鎖の炭素原子数が多い式(III-F)のR5がペンチル基、R6がメチル基である化合物の含有量を13%から15%に増加させた液晶組成物を調製した。その物性値を示す。
(実施例2)
以下に、調製した液晶組成物とその物性値を示す。
(実施例3)
以下に、調製した液晶組成物とその物性値を示す。
(実施例4)
実施例1に示すネマチック液晶組成物 99.7%に対して、式(IV-a)
(実施例5)
実施例1に示すネマチック液晶組成物 99.7%に対して、式(IV-b)
(実施例6)
実施例1に示すネマチック液晶組成物 99.7%に対して、式(IV-c)
Claims (15)
- 25℃におけるΔεが-2.0から-6.0の範囲であり、25℃における屈折率異方性(Δn)が0.08から0.13の範囲であり、20℃における粘度(η)が10から30 mPa・sの範囲であり、ネマチック相-等方性液体相転移温度(Tni)が60から120℃の範囲である請求項1に記載の液晶組成物。
- 第二成分として、一般式(II-1)及び(II-2)
(式中、R1及びR2はそれぞれ独立的に炭素原子数1から10のアルキル基、炭素原子数1から10のアルコキシル基炭素原子数2から10のアルケニル基又は炭素原子数2から10のアルケニルオキシ基を表し、R1及びR2中に存在する1個の-CH2-又は隣接していない2個以上の-CH2-はそれぞれ独立的に-O-及び/又は-S-に置換されてもよく、またR1及びR2中に存在する1個又は2個以上の水素原子はそれぞれ独立的にフッ素原子又は塩素原子に置換されてもよく、環A及び環Bはそれぞれ独立的にトランス-1,4-シクロへキシレン基、1,4-フェニレン基、2-フルオロ-1,4-フェニレン基、3-フルオロ-1,4-フェニレン基、3,5-ジフルオロ-1,4-フェニレン基、2,3-ジフルオロ-1,4-フェニレン基、1,4-シクロヘキセニレン基、1,4-ビシクロ[2.2.2]オクチレン基、ピペリジン-1,4-ジイル基、ナフタレン-2,6-ジイル基、デカヒドロナフタレン-2,6-ジイル基又は1,2,3,4-テトラヒドロナフタレン-2,6-ジイル基を表し、p及びqはそれぞれ独立的に0、1又は2を表す。)で表される化合物群から選ばれる1種又は2種以上の化合物を含有する請求項1又は2に記載の液晶組成物。 - 第二成分の含有量が10から90質量%である請求項1から3のいずれか1項に記載の液晶組成物。
- 式(I)、一般式(II-1A)、(II-2A)及び一般式(III-A)を同時に含有する請求項1から6のいずれか1項に記載の液晶組成物。
- 式(I)、一般式(II-1B)、(II-2A)及び一般式(III-A)を同時に含有する請求項1から6のいずれか1項に記載の液晶組成物。
- 式(I)、一般式(II-1A)、(II-1B)、(II-2A)及び一般式(III-A)を同時に含有する請求項1から6のいずれか1項に記載の液晶組成物。
- 塩素原子を有する液晶化合物の含有量が10%未満である請求項1から9のいずれか1項に記載の液晶組成物。
- アルケニル基を有する液晶化合物の含有量が10%未満である請求項1から10のいずれか1項に記載の液晶組成物。
- 重合性化合物を含有する請求項1から11のいずれか1項に記載の液晶組成物。
- 請求項1から12のいずれか1項に記載の液晶組成物を用いた液晶表示素子。
- 請求項1から12のいずれか1項に記載の液晶組成物を用いたアクティブマトリックス駆動用液晶表示素子。
- 請求項1から12のいずれか1項に記載の液晶組成物を用いたVAモード、PSAモード、PSVAモード、IPSモード又はECBモード用液晶表示素子。
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TWI607080B (zh) * | 2012-12-12 | 2017-12-01 | 迪愛生股份有限公司 | Nematic liquid crystal composition and liquid crystal display element using the same |
JP5761468B2 (ja) * | 2013-03-06 | 2015-08-12 | Dic株式会社 | ネマチック液晶組成物及びこれを用いた液晶表示素子 |
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WO2014136770A1 (ja) * | 2013-03-06 | 2014-09-12 | Dic株式会社 | ネマチック液晶組成物及びこれを用いた液晶表示素子 |
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US10351772B2 (en) | 2014-05-13 | 2019-07-16 | Dic Corporation | Nematic liquid crystal composition and liquid crystal display element using same |
JP2016017107A (ja) * | 2014-07-07 | 2016-02-01 | Jnc株式会社 | 液晶組成物および液晶表示素子 |
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WO2018096932A1 (ja) * | 2016-11-22 | 2018-05-31 | Dic株式会社 | 液晶組成物及び液晶表示素子 |
WO2019116904A1 (ja) * | 2017-12-15 | 2019-06-20 | Dic株式会社 | 液晶組成物及び液晶表示素子 |
JP6575735B1 (ja) * | 2017-12-15 | 2019-09-18 | Dic株式会社 | 液晶組成物及び液晶表示素子 |
Also Published As
Publication number | Publication date |
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KR101370952B1 (ko) | 2014-03-10 |
EP3095833A3 (en) | 2016-12-07 |
CN104498052A (zh) | 2015-04-08 |
TWI541329B (zh) | 2016-07-11 |
US9023439B2 (en) | 2015-05-05 |
JPWO2012137810A1 (ja) | 2014-07-28 |
EP3095833A2 (en) | 2016-11-23 |
TW201249967A (en) | 2012-12-16 |
EP2695929A1 (en) | 2014-02-12 |
EP2695929A4 (en) | 2014-12-31 |
EP3095833B1 (en) | 2018-06-27 |
US9879181B2 (en) | 2018-01-30 |
JP5234227B2 (ja) | 2013-07-10 |
KR20130116947A (ko) | 2013-10-24 |
EP2695929B1 (en) | 2016-09-14 |
CN103459552B (zh) | 2015-02-25 |
US20140070142A1 (en) | 2014-03-13 |
US20150034873A1 (en) | 2015-02-05 |
TW201629189A (zh) | 2016-08-16 |
TWI596193B (zh) | 2017-08-21 |
CN103459552A (zh) | 2013-12-18 |
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