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JP2007119672A - Nematic liquid crystal composition - Google Patents

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JP2007119672A
JP2007119672A JP2005316168A JP2005316168A JP2007119672A JP 2007119672 A JP2007119672 A JP 2007119672A JP 2005316168 A JP2005316168 A JP 2005316168A JP 2005316168 A JP2005316168 A JP 2005316168A JP 2007119672 A JP2007119672 A JP 2007119672A
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JP5240487B2 (en
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Yasuo Umetsu
安男 梅津
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a liquid crystal composition for active matrix liquid crystal display element having broad liquid crystal phase temperature range and low viscosity and provide an active matrix liquid crystal display element produced by using the liquid crystal composition and having broad working temperature range. <P>SOLUTION: The nematic liquid crystal composition contains a compound expressed by structural formula (1) in an amount of 35-65% as the first component and a compound expressed by general formula (2) as the second component. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は電気光学的液晶表示材料として有用なネマチック晶組成物、これを用いた液晶表示装置に関する。   The present invention relates to a nematic crystal composition useful as an electro-optical liquid crystal display material, and a liquid crystal display device using the same.

表示品質が優れていることから、アクティブマトリクス形液晶表示装置が携帯端末、液晶テレビ、プロジェクタ、コンピューター等の市場に出されている。アクティブマトリクス表示方式は、画素毎にTFT(薄膜トランジスタ)あるいはMIM(メタル・インシュレータ・メタル)等が使われており、この方式には高電圧保持率であることが重要視されている。また、更に広い視角特性を得るためにIPS、OCBモードと組み合わせたTFT表示やより明るい表示を得るためにECBモードの反射型が提案されている。この様な表示素子に対応するために、現在も新しい液晶化合物あるいは液晶組成物の提案がなされている(特許文献1、特許文献2)。   Due to the excellent display quality, active matrix liquid crystal display devices are put on the market for portable terminals, liquid crystal televisions, projectors, computers and the like. In the active matrix display method, TFT (thin film transistor) or MIM (metal insulator metal) is used for each pixel, and high voltage holding ratio is regarded as important in this method. Also, in order to obtain a wider viewing angle characteristic, a TFT display combined with IPS and OCB modes and a reflection type of ECB mode have been proposed to obtain a brighter display. In order to cope with such display elements, new liquid crystal compounds or liquid crystal compositions have been proposed (Patent Document 1 and Patent Document 2).

ツイステッドネマチック液晶表示素子(TN-LCD)やスーパーツイステッドネマチック液晶表示素子(STN-LCD)においては、表示の応答速度を高速化させるために低粘性化された液晶組成物への要望が強くなっている。また低温領域から高温領域まで広い動作温度範囲を可能にするためにネマチック温度範囲の広い液晶組成物が要求されている。   In twisted nematic liquid crystal display elements (TN-LCDs) and super twisted nematic liquid crystal display elements (STN-LCDs), there is a strong demand for liquid crystal compositions with reduced viscosity in order to increase the response speed of displays. Yes. In addition, in order to enable a wide operating temperature range from a low temperature region to a high temperature region, a liquid crystal composition having a wide nematic temperature range is required.

低粘性液晶組成物は、Δn値の小さいシクロヘキサン環で構成されたビシクロヘキサン誘導体等の含有率を大きくすることで得ることができる。しかし、これらの化合物はスメクチック性が高く、ビシクロヘキサン系化合物の含有率を大きくした場合、ネマチック相下限温度(T-n)を低くすることが困難であり、広いネマチック温度範囲を有する液晶組成物を得ることが困難であった。   The low viscosity liquid crystal composition can be obtained by increasing the content of a bicyclohexane derivative composed of a cyclohexane ring having a small Δn value. However, these compounds have high smectic properties, and it is difficult to lower the nematic phase lower limit temperature (Tn) when the content of the bicyclohexane compound is increased, and a liquid crystal composition having a wide nematic temperature range is obtained. It was difficult.

比較的低粘性である液晶組成物は既に知られており、好ましい化合物の具体例が開示されている(特許文献3)。またビシクロヘキサン誘導体とphenylビシクロhexyl化合物を組み合わせた屈折率異方性の小さい液晶組成物も既に知られており、好ましい化合物の具体例が開示されている(特許文献4)。しかしながら、これら組成物の粘性は十分に低いものではなかった。   Liquid crystal compositions having a relatively low viscosity are already known, and specific examples of preferred compounds are disclosed (Patent Document 3). A liquid crystal composition having a small refractive index anisotropy in which a bicyclohexane derivative and a phenyl bicyclohexyl compound are combined is already known, and a specific example of a preferable compound is disclosed (Patent Document 4). However, the viscosity of these compositions was not sufficiently low.

一方、四環化合物を使用して液晶温度範囲を調整した液晶組成物も既に知られており、好ましい化合物の具体例が開示されている(特許文献5)。しかしながら、この組成物も高速応答に対応できるほど粘性が十分に低いものではなかった。   On the other hand, a liquid crystal composition in which a liquid crystal temperature range is adjusted using a tetracyclic compound is already known, and a specific example of a preferable compound is disclosed (Patent Document 5). However, this composition was also not sufficiently low in viscosity to accommodate a high-speed response.

以上のことから、液晶相温度範囲が広く、粘性が低い液晶組成物を得ることは困難であった。   From the above, it has been difficult to obtain a liquid crystal composition having a wide liquid crystal phase temperature range and low viscosity.

特開平2−233626号公報JP-A-2-233626 特公表4−501575号公報Special Publication 4-501575 Publication 特許第2882577号公報(32頁の例28)Japanese Patent No. 2882577 (Example 28 on page 32) 特開平10−259377(17頁の例A〜D)JP-A-10-259377 (Examples A to D on page 17) 特開2000−26860号公報(23頁の21)Japanese Unexamined Patent Publication No. 2000-26860 (21 on page 23)

本発明が解決しようとする課題は、液晶相温度範囲が広く、粘性が低いアクティブマトリクス型液晶表示素子用液晶組成物を提供すること、また、この液晶組成物を使用した動作温度範囲が広いアクティブマトリクス型液晶表示素子を提供することにある。   The problem to be solved by the present invention is to provide a liquid crystal composition for an active matrix liquid crystal display device having a wide liquid crystal phase temperature range and low viscosity, and an active temperature range using this liquid crystal composition is wide. It is to provide a matrix type liquid crystal display element.

本発明は、上記課題を解決するために鋭意検討した結果、第一成分として構造式(1)、   As a result of intensive studies to solve the above problems, the present invention has the structural formula (1) as the first component,

Figure 2007119672
で表される化合物を35〜65%含有し、第二成分としてとして一般式(2)
Figure 2007119672
Containing 35 to 65% of a compound represented by the general formula (2) as a second component

Figure 2007119672
(式中、R1は炭素数1〜15のアルキル基又は炭素数2〜15のアルケニル基であり、この基は非置換であるか、あるいは置換基として少なくとも1個のハロゲン基を有しており、そしてこれらの基中に存在する1個又は2個以上のCH2基はそれぞれ独立してO原子が相互に直接結合しないものとして-O-、-S-、-CO-により置き換えられても良く、
B1、B2、B3はそれぞれ独立的に
(a) trans-1,4-シクロへキシレン基(この基中に存在する1個のCH2基又は隣接していない2個以上のCH2基は -O- 及び又は -S- に置き換えられてもよい)
(b) 1,4-フェニレン基(この基中に存在する1個のCH2基又は隣接していない2個以上のCH2基は -N- に置き換えられてもよい)
からなる群より選ばれる基であり、上記の基(a)、基(b)はCH3又はハロゲンで置換されていても良く、
L1、L2、L3はそれぞれ独立的に単結合、-CH2CH2-、-(CH2)4-、-COO-、-OCH2-、-CH2O-、-OCF2-、-CF2O-又は-C≡C-を表し、
Q1は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であり、
X1〜X3はそれぞれ独立してH、F又はClである。) で表される化合物群から選ばれる1種もしくは2種以上の化合物を含有することを特徴とするアクティブマトリクス型液晶表示素子用液晶組成物及び当該液晶組成物を構成部材とする液晶表示素子を提供する。
Figure 2007119672
Wherein R 1 is an alkyl group having 1 to 15 carbon atoms or an alkenyl group having 2 to 15 carbon atoms, and this group is unsubstituted or has at least one halogen group as a substituent. And one or more CH 2 groups present in these groups are each independently replaced by -O-, -S-, -CO- as O atoms are not directly bonded to each other. Well,
B 1 , B 2 and B 3 are each independently
(a) trans-1,4-cyclohexylene group (one CH 2 group present in this group or two or more non-adjacent CH 2 groups are replaced by -O- and / or -S- (May be)
(b) 1,4-phenylene group (one CH 2 group present in this group or two or more non-adjacent CH 2 groups may be replaced by -N-)
A group selected from the group consisting of the above group (a), the group (b) may be substituted with CH 3 or halogen,
L 1 , L 2 and L 3 are each independently a single bond, —CH 2 CH 2 —, — (CH 2 ) 4 —, —COO—, —OCH 2 —, —CH 2 O—, —OCF 2 — , -CF 2 O- or -C≡C-
Q 1 is —OCH 2 —, —OCF 2 —, —OCHF—, —CF 2 —, or a single bond,
X 1 to X 3 are each independently H, F or Cl. A liquid crystal composition for an active matrix type liquid crystal display element comprising one or more compounds selected from the group of compounds represented by formula (1) and a liquid crystal display element comprising the liquid crystal composition as a constituent member provide.

本発明の液晶化合物の組み合わせによって、非常に粘性が低く、低温で安定したネマチック相を持ち、液晶相温度範囲が広く、広い範囲で屈折率異方性(Δn=0.05〜0.15)を調整でき、かつ信頼性に優れたアクティブマトリクス型液晶表示素子用液晶組成物が得られた。この組成物を用いることにより、動作温度範囲が広いアクティブマトリクス型液晶表示素子が提供され、反射または半透過モード等の液晶ディスプレイとして非常に実用的である。   The combination of the liquid crystal compounds of the present invention has a nematic phase that is very low in viscosity and stable at low temperatures, has a wide liquid crystal phase temperature range, and can adjust the refractive index anisotropy (Δn = 0.05 to 0.15) over a wide range. In addition, a liquid crystal composition for an active matrix liquid crystal display element having excellent reliability was obtained. By using this composition, an active matrix liquid crystal display element having a wide operating temperature range is provided, which is very practical as a liquid crystal display in a reflective or transflective mode.

本願発明における液晶組成物において、第一成分として構造式(1)で表される化合物の含有率は30〜65%であるが、40〜60質量%の範囲であることが好ましい。   In the liquid crystal composition of the present invention, the content of the compound represented by the structural formula (1) as the first component is 30 to 65%, but is preferably in the range of 40 to 60% by mass.

第二成分として一般式(2)で表される化合物群から1種または2種以上を含有するが、1種〜10種が好ましく、1種〜7種がより好ましく、2種〜5種がさらに好ましい。 It contains 1 or 2 or more types from the compound group represented by the general formula (2) as the second component, preferably 1 to 10 types, more preferably 1 to 7 types, more preferably 2 to 5 types. Further preferred.

第二成分として一般式(2)で表される化合物群から選ばれる1種または2種以上の化合物の含有率は、5〜30質量%の範囲であることが好まく、10〜20質量%の範囲であることがより好ましい。また、R1は炭素数1〜10のアルキル基又は炭素数2〜10のアルケニル基、炭素数2〜10のアルキル基中に存在する1個のCH2基が-O-により置き換えられたものが好ましく、未置換の直鎖状炭素数1〜8のアルキル基又は炭素数2〜8のアルケニル基、炭素数2〜8のアルキル基中に存在する1個のCH2基が-O-により置き換えられたものがより好ましく、アルケニル基では以下の式(a)〜(e)の構造がさらに好ましい。 The content of one or more compounds selected from the compound group represented by the general formula (2) as the second component is preferably in the range of 5 to 30% by mass, and 10 to 20% by mass. More preferably, it is the range. R 1 is an alkyl group having 1 to 10 carbon atoms, an alkenyl group having 2 to 10 carbon atoms, or one CH 2 group present in an alkyl group having 2 to 10 carbon atoms replaced by —O—. Preferably, an unsubstituted linear alkyl group having 1 to 8 carbon atoms or an alkenyl group having 2 to 8 carbon atoms, and one CH 2 group present in the alkyl group having 2 to 8 carbon atoms is represented by —O—. The substituted group is more preferable, and the structure of the following formulas (a) to (e) is more preferable for the alkenyl group.

Figure 2007119672
(構造式は右端で環に連結しているものとする。)
Figure 2007119672
(The structural formula shall be connected to the ring at the right end.)

B1、B2及びB3はtrans-1,4-シクロへキシレン基、1,4-フェニレン基、3-fluoro-1,4-フェニレン基又は3,5-difluoro-1,4-フェニレン基が好ましく、1,4-フェニレン基又はtrans-1,4-シクロへキシレン基がより好ましい。L1、L2及びL3は、単結合、-CH2CH2-、-(CH2)4-、-COO-、-OCH2-、-CH2O-、-OCF2-、-CF2O-又は-C≡C-であるが、-CH2CH2-、-OCF2-、-CF2O-又は単結合が好ましく、-CH2CH2-、-CF2O-又は単結合がより好ましく、-CH2CH2-又は単結合が特に好ましい。 B 1 , B 2 and B 3 are trans-1,4-cyclohexylene group, 1,4-phenylene group, 3-fluoro-1,4-phenylene group or 3,5-difluoro-1,4-phenylene group 1,4-phenylene group or trans-1,4-cyclohexylene group is more preferable. L 1 , L 2 and L 3 are a single bond, —CH 2 CH 2 —, — (CH 2 ) 4 —, —COO—, —OCH 2 —, —CH 2 O—, —OCF 2 —, —CF 2 O- or -C≡C-, but -CH 2 CH 2- , -OCF 2- , -CF 2 O- or a single bond is preferred, -CH 2 CH 2- , -CF 2 O- or single A bond is more preferable, and —CH 2 CH 2 — or a single bond is particularly preferable.

Q1は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であるが、-OCF2-、-CF2-、または単結合が好ましく、単結合がより好ましい。X1〜X3はそれぞれ独立してH、F又はClであるが、-H、-Fが好ましく、X2はFが好ましい。 Q 1 is —OCH 2 —, —OCF 2 —, —OCHF—, —CF 2 —, or a single bond, preferably —OCF 2 —, —CF 2 —, or a single bond, and more preferably a single bond. X 1 to X 3 are each independently H, F or Cl, but —H and —F are preferred, and X 2 is preferably F.

さらに詳述すると、一般式(2)の具体的な構造として以下の化合物が好ましい。   More specifically, the following compounds are preferred as the specific structure of the general formula (2).

Figure 2007119672
(式中R1はそれぞれ独立して、炭素数1〜15のアルキル基又は炭素数2〜15のアルケニル基を表す。)
Figure 2007119672
(In the formula, each R 1 independently represents an alkyl group having 1 to 15 carbon atoms or an alkenyl group having 2 to 15 carbon atoms.)

組成物の物性値を調整し、さらに低粘性化、低電圧化を達成させるために第三成分として、一般式(3)   The general formula (3) is used as the third component to adjust the physical properties of the composition and to achieve lower viscosity and lower voltage.

Figure 2007119672
(式中、R2はR1と同じ意味を表し、
B4はB1と同じ意味を表し、
L4、L1と同じ意味を表し、
B4及びL4が複数存在する場合はそれらは同一でも良く異なっていても良く、
mは 0、1又は2であり、
nは0又は1であり、
Q2は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であり、
X4〜X8はそれぞれ独立してH、F又はClである。) で表される化合物群から選ばれる1種もしくは2種以上の化合物含有することが好ましい。
Figure 2007119672
(Wherein R 2 represents the same meaning as R 1 ,
B 4 has the same meaning as B 1
L 4 has the same meaning as L 1 ,
When there are a plurality of B 4 and L 4, they may be the same or different,
m is 0, 1 or 2;
n is 0 or 1,
Q 2 is -OCH2-, -OCF2-, -OCHF-, -CF2-, or a single bond,
X 4 to X 8 are each independently H, F, or Cl. It is preferable to contain one or more compounds selected from the group of compounds represented by:

第三成分として一般式(3)で表される化合物群を2種〜15種含有することが好ましく、2種〜10種がより好ましく、4種〜7種がさらに好ましい。   It is preferable to contain 2-15 types of compound groups represented by General formula (3) as a 3rd component, 2-10 types are more preferable, and 4-7 types are more preferable.

第三成分として一般式(3)で表される化合物群から選ばれる1種または2種以上の化合物の含有率は、5〜30質量%の範囲であることがより好ましく、10〜30質量%の範囲であることがさらに好ましい。また、R3〜R5は、炭素数1〜10のアルキル基又は炭素数2〜10のアルケニル基が好ましく、未置換の直鎖状炭素数1〜8のアルキル基又は炭素数2〜8のアルケニル基がより好ましく、アルケニル基では式(a)〜(e)の構造がさらに好ましい。 The content of one or more compounds selected from the compound group represented by the general formula (3) as the third component is more preferably in the range of 5 to 30% by mass, and 10 to 30% by mass. More preferably, it is the range. R 3 to R 5 are preferably an alkyl group having 1 to 10 carbon atoms or an alkenyl group having 2 to 10 carbon atoms, an unsubstituted linear alkyl group having 1 to 8 carbon atoms or an alkyl group having 2 to 8 carbon atoms. Alkenyl groups are more preferred, and structures of formulas (a) to (e) are more preferred for alkenyl groups.

B4はtrans-1,4-シクロへキシレン基、1,4-フェニレン基、3-fluoro-1,4-フェニレン基又は3,5-difluoro-1,4-フェニレン基が好ましく、1,4-フェニレン基又はtrans-1,4-シクロへキシレン基がより好ましい。L4は、単結合、-CH2CH2-、-(CH2)4-、-OCH2-、-CH2O-、-OCF2-、-CF2O-又は-C≡C-であるが、-CH2CH2-、-OCF2-、-CF2O-又は単結合が好ましく、-CH2CH2-、-CF2O-又は単結合がより好ましく、-CH2CH2-又は単結合が特に好ましい。mは 0、1又は2であり、nは0又は1であるが、m+nは1又は2が好ましい。 B 4 is preferably trans-1,4-cyclohexylene group, 1,4-phenylene group, 3-fluoro-1,4-phenylene group or 3,5-difluoro-1,4-phenylene group, A -phenylene group or a trans-1,4-cyclohexylene group is more preferable. L 4 is a single bond, —CH 2 CH 2 —, — (CH 2 ) 4 —, —OCH 2 —, —CH 2 O—, —OCF 2 —, —CF 2 O— or —C≡C—. -CH 2 CH 2- , -OCF 2- , -CF 2 O- or a single bond is preferable, -CH 2 CH 2- , -CF 2 O- or a single bond is more preferable, -CH 2 CH 2 -Or a single bond is particularly preferred. m is 0, 1 or 2, and n is 0 or 1, but m + n is preferably 1 or 2.

Q2は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であるが、-OCF2-、-CF2-、または単結合が好ましく、単結合がより好ましい。X4〜X8はそれぞれ独立してH、F又はClであるが、-H、-Fが好ましく、X8はFが好ましい。 Q 2 is —OCH 2 —, —OCF 2 —, —OCHF—, —CF 2 —, or a single bond, preferably —OCF 2 —, —CF 2 —, or a single bond, and more preferably a single bond. X 4 to X 8 are each independently H, F or Cl, but —H and —F are preferred, and X 8 is preferably F.

さらに詳述すると、一般式(3)は、具体的な構造として以下の一般式で表される化合物が好ましい。   More specifically, the general formula (3) is preferably a compound represented by the following general formula as a specific structure.

Figure 2007119672
(式中、R2はそれぞれ独立して、炭素数1〜15のアルキル基又は炭素数2〜15のアルケニル基を表す。)
Figure 2007119672
(In the formula, each R 2 independently represents an alkyl group having 1 to 15 carbon atoms or an alkenyl group having 2 to 15 carbon atoms.)

本発明において、ネマチック相-等方性液体相転移温度(TN-I)は70℃以上であることがより好ましい。固体相又はスメクチック相−ネマチック相転移温度(T→N)は-20℃以下であることが好ましい。25℃における誘電率異方性(Δε)が2.5〜7.0であることが好ましく、3.0〜5.0であることがより好ましい。25℃における屈折率異方性(Δn)が0.08〜0.13であることが好ましい。 In the present invention, the nematic phase-isotropic liquid phase transition temperature (T NI ) is more preferably 70 ° C. or higher. The solid phase or smectic phase-nematic phase transition temperature (T 1 → N 2 ) is preferably −20 ° C. or lower. The dielectric anisotropy (Δε) at 25 ° C. is preferably 2.5 to 7.0, and more preferably 3.0 to 5.0. The refractive index anisotropy (Δn) at 25 ° C. is preferably 0.08 to 0.13.

上記ネマチック液晶組成物は、液晶表示素子に有用であり、特にアクティブマトリクス駆動用液晶表示素子に有用であり、反射モードまたは半透過モード用液晶表示素子に用いることができる。   The nematic liquid crystal composition is useful for a liquid crystal display element, particularly useful for a liquid crystal display element for driving an active matrix, and can be used for a liquid crystal display element for a reflection mode or a transflective mode.

本発明のネマテチック液晶組成物は、上記の化合物以外に、通常のネマチック液晶、スメクチック液晶、コレステリック液晶などを含有してもよい。   The nematic liquid crystal composition of the present invention may contain a normal nematic liquid crystal, a smectic liquid crystal, a cholesteric liquid crystal and the like in addition to the above compounds.

以下にを挙げて本発明を更に詳述するが、本発明はこれらのに限定されるものではない。また、以下のおよび比較例の組成物における「%」は『質量%』を意味する。   The present invention will be further described in detail below, but the present invention is not limited thereto. Further, “%” in the compositions of the following and comparative examples means “mass%”.

TN-I :ネマチック相−等方性液体相転移温度(℃)を液晶相上限温度とする
T→N :固体相又はスメクチック相−ネマチック相転移温度(℃)を液晶相下限温度
とする。
Δε :誘電率異方性
Δn :屈折率異方性
γ1 :回転粘性
HR :60℃での保持率(%)(セル厚6μmのTN-LCDに注入し、5V印加、フレームタ
イム200ms、パルス幅64μsで測定したときの測定電圧と初期印加電圧との
比を%で表した値。)
化合物記載に下記の略号を使用する。
末端のn(数字) CnH2n+1-
2 -CH2CH2-
On -OCnH2n+1
F -F
CFFF -CF3
OCFFF -OCF3
ndm- CnH2n+1-C=C-(CH2)m-1-
nOm- CnH2n+1-O-(CH2)m-1-
-E- -COO-
-T- -C≡C-
T NI : Nematic phase-isotropic liquid phase transition temperature (° C) is the liquid crystal phase upper limit temperature
T → N : Solid phase or smectic phase-nematic phase transition temperature (° C) is the lower limit of liquid crystal phase temperature
And
Δε: Dielectric anisotropy Δn: Refractive index anisotropy γ1: Rotational viscosity
HR: Retention rate at 60 ° C (%) (Injected into TN-LCD with 6μm cell thickness, 5V applied, flame
Between the measured voltage and the initial applied voltage when measured at 200 ms and a pulse width of 64 μs.
Value expressed as a percentage. )
The following abbreviations are used in compound descriptions.
Terminal n (number) C n H 2n + 1-
2 -CH 2 CH 2-
On -OC n H 2n + 1
F -F
CFFF -CF 3
OCFFF -OCF 3
ndm- C n H 2n + 1 -C = C- (CH 2 ) m-1-
nOm- C n H 2n + 1 -O- (CH 2 ) m-1-
-E- -COO-
-T- -C≡C-

Figure 2007119672
Figure 2007119672

(1〜3) Synthesis of 液晶組成物の調整
以下に示すネマチック液晶組成物(No.1)、(No.2)及び(No.3)を調整しその物性値を測定し、その結果を表1に示す。
(1-3) Synthesis of liquid crystal composition adjustment Nematic liquid crystal compositions (No. 1), (No. 2) and (No. 3) shown below were prepared and their physical properties were measured. Shown in 1.

Figure 2007119672
Figure 2007119672

1〜3のネマチック液晶組成物(No.1)〜(No.3)特性は、ネマチック相-等方性液体相転移温度(TN-I)、固体相又はスメクチック相−ネマチック相転移温度(T→N)、誘電率異方性(Δε)、屈折率異方性(Δn)全ての特性において所望の値を示した。また粘性も低く、パネルの応答速度も良好であり、さらに加熱150℃1時間後の保持率も初期の値を保っており信頼性が良好であった。 1 to 3 nematic liquid crystal compositions (No.1) to (No.3) are characterized by nematic phase-isotropic liquid phase transition temperature (T NI ), solid phase or smectic phase-nematic phase transition temperature (T → N ), dielectric anisotropy (Δε), and refractive index anisotropy (Δn) showed desired values. In addition, the viscosity was low, the response speed of the panel was good, and the retention after 1 hour of heating at 150 ° C. kept the initial value, and the reliability was good.

(比較例1〜3) Synthesis of 液晶組成物の調整
比較例として以下に示すネマチック液晶組成物(R1)〜(R3)を調整しその物性値を測定し、その結果を表2に示す。
Comparative Examples 1 to 3 Preparation of Synthesis of Liquid Crystal Composition As comparative examples, nematic liquid crystal compositions (R1) to (R3) shown below were prepared and measured for physical properties. The results are shown in Table 2.

Figure 2007119672
Figure 2007119672

比較例1〜比較例3は第一成分の含有量を30%としたものだが、と比較して粘性が高いものであった。   In Comparative Examples 1 to 3, the content of the first component was 30%, but the viscosity was higher than that of Comparative Example 1 to Comparative Example 3.

(比較例4) Synthesis of 液晶組成物の調整
比較例として以下に示すネマチック液晶組成物(R4)を調整しその物性値を測定し、その結果を表3に示す。
(Comparative Example 4) Preparation of Synthesis of Liquid Crystal Composition As a comparative example, the nematic liquid crystal composition (R4) shown below was prepared and measured for physical properties. The results are shown in Table 3.

Figure 2007119672
Figure 2007119672

比較例4ネマチック液晶組成物(R4)は粘性がと比較して高くパネルの応答速度が十分に高速ではなかった。またネマチック相-等方性液体相転移温度(TN-I)が65℃と低く、液晶相の温度範囲が狭いため実用的な液晶組成物としては使用することができないものであった。 Comparative Example 4 The nematic liquid crystal composition (R4) had a higher viscosity than the panel and the panel response speed was not sufficiently high. Further, the nematic phase-isotropic liquid phase transition temperature (T NI ) was as low as 65 ° C., and the temperature range of the liquid crystal phase was narrow, so that it could not be used as a practical liquid crystal composition.

(比較例5〜8) Synthesis of 液晶組成物の調整
比較例として以下に示すネマチック液晶組成物(R5)〜(R8)を調整しその物性値を測定し、その結果を表4に示す。
(Comparative Examples 5 to 8) Synthesis of liquid crystal composition adjustment Nematic liquid crystal compositions (R5) to (R8) shown below were prepared as comparative examples, and their physical properties were measured. Table 4 shows the results.

Figure 2007119672
Figure 2007119672

比較例5〜比較例8のネマチック液晶組成物(R5)〜(R8)の特性は、ネマチック相-等方性液体相転移温度(TN-I)は高いものの粘性がと比較して高くパネルの応答速度が十分に高速ではなかった。 The characteristics of the nematic liquid crystal compositions (R5) to (R8) in Comparative Examples 5 to 8 are high in nematic phase-isotropic liquid phase transition temperature (T NI ) but higher in viscosity than the panel response. The speed was not fast enough.

(比較例9) Synthesis of 液晶組成物の調整
比較例として以下に示すネマチック液晶組成物(R9)を調整しその物性値を測定し、その結果を表4に示す。
Comparative Example 9 Preparation of Synthesis of Liquid Crystal Composition As a comparative example, the nematic liquid crystal composition (R9) shown below was prepared and measured for physical properties. The results are shown in Table 4.

Figure 2007119672
Figure 2007119672

比較例9のネマチック液晶組成物(R9)の特性は、ネマチック相-等方性液体相転移温度(TN-I)は高いものの粘性がと比較して高くパネルの応答速度が十分に高速ではなかった。

The nematic liquid crystal composition (R9) of Comparative Example 9 has a high nematic phase-isotropic liquid phase transition temperature (T NI ), but its viscosity is high compared to the panel, and the response speed of the panel is not sufficiently high. .

Claims (6)

第一成分として構造式(1)、
Figure 2007119672
で表される化合物を35〜65%含有し、第二成分としてとして一般式(2)
Figure 2007119672
(式中、R1は炭素数1〜15のアルキル基又は炭素数2〜15のアルケニル基であり、この基は非置換であるか、あるいは置換基として少なくとも1個のハロゲン基を有しており、そしてこれらの基中に存在する1個又は2個以上のCH2基はそれぞれ独立してO原子が相互に直接結合しないものとして-O-、-S-、-CO-により置き換えられても良く、
B1、B2、B3はそれぞれ独立的に
(a) トランス-1,4-シクロへキシレン基(この基中に存在する1個のCH2基又は隣接していない2個以上のCH2基は -O- 及び又は -S- に置き換えられてもよい)
(b) 1,4-フェニレン基(この基中に存在する1個のCH2基又は隣接していない2個以上のCH2基は -N- に置き換えられてもよい)
からなる群より選ばれる基であり、上記の基(a)、基(b)はCH3又はハロゲンで置換されていても良く、
L1、L2、L3はそれぞれ独立的に単結合、-CH2CH2-、-(CH2)4-、-COO-、-OCH2-、-CH2O-、-OCF2-、-CF2O-又は-C≡C-を表し、
Q1は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であり、
X1〜X3はそれぞれ独立してH、F又はClである。)で表される化合物群から選ばれる1種もしくは2種以上の化合物を含有することを特徴とするネマチック液晶組成物。
Structural formula (1) as the first component,
Figure 2007119672
Containing 35 to 65% of a compound represented by the general formula (2) as a second component
Figure 2007119672
Wherein R 1 is an alkyl group having 1 to 15 carbon atoms or an alkenyl group having 2 to 15 carbon atoms, and this group is unsubstituted or has at least one halogen group as a substituent. And one or more CH 2 groups present in these groups are each independently replaced by -O-, -S-, -CO- as O atoms are not directly bonded to each other. Well,
B 1 , B 2 and B 3 are each independently
(a) trans-1,4-cyclohexylene group (one CH 2 group present in this group or two or more non-adjacent CH 2 groups are replaced by -O- and / or -S- (May be)
(b) 1,4-phenylene group (one CH 2 group present in this group or two or more non-adjacent CH 2 groups may be replaced by -N-)
A group selected from the group consisting of the above group (a), the group (b) may be substituted with CH 3 or halogen,
L 1 , L 2 and L 3 are each independently a single bond, —CH 2 CH 2 —, — (CH 2 ) 4 —, —COO—, —OCH 2 —, —CH 2 O—, —OCF 2 — , -CF 2 O- or -C≡C-
Q 1 is -OCH2-, -OCF2-, -OCHF-, -CF2-, or a single bond,
X 1 to X 3 are each independently H, F or Cl. A nematic liquid crystal composition comprising one or more compounds selected from the group of compounds represented by:
第三成分としてとして一般式(3)
Figure 2007119672
(式中、R2はR1と同じ意味を表し、
B4はB1と同じ意味を表し、
L4、L1と同じ意味を表し、
B4及びL4が複数存在する場合はそれらは同一でも良く異なっていても良く、
mは 0、1又は2であり、
nは0又は1であり、
Q2は-OCH2-、-OCF2-、-OCHF-、-CF2-、または単結合であり、
X4〜X8はそれぞれ独立してH、F又はClである。) で表される化合物群から選ばれる1種もしくは2種以上の化合物を含有する請求項1記載のネマチック液晶組成物。
General formula (3) as the third component
Figure 2007119672
(Wherein R 2 represents the same meaning as R 1 ,
B 4 has the same meaning as B 1
L 4 has the same meaning as L 1 ,
When there are a plurality of B 4 and L 4, they may be the same or different,
m is 0, 1 or 2;
n is 0 or 1,
Q 2 is -OCH2-, -OCF2-, -OCHF-, -CF2-, or a single bond,
X 4 to X 8 are each independently H, F, or Cl. 2. The nematic liquid crystal composition according to claim 1, comprising one or more compounds selected from the group of compounds represented by formula (1):
構造式(1)で表される化合物35〜65%、一般式(2)で表される化合物及び一般式(3)で表される化合物からなる請求項2記載のネマチック液晶組成物。 3. The nematic liquid crystal composition according to claim 2, comprising 35 to 65% of a compound represented by the structural formula (1), a compound represented by the general formula (2), and a compound represented by the general formula (3). ネマチック−アイソトロピック転移温度が68℃〜120℃であり、クリスタル又はスメクチック−ネマチック転移温度が-80℃〜-20℃であり、屈折率異方性Δnが0.05〜0.15であり、誘電率異方性Δεが2.5〜10.0であることを特徴とする請求項1から3の何れかに記載の液晶組成物。 Nematic-isotropic transition temperature is 68 ° C to 120 ° C, crystal or smectic-nematic transition temperature is -80 ° C to -20 ° C, refractive index anisotropy Δn is 0.05 to 0.15, dielectric constant anisotropic The liquid crystal composition according to claim 1, wherein the property Δε is 2.5 to 10.0. 請求項1から4の何れかに記載のネマチック液晶組成物を用いた液晶表示素子。 A liquid crystal display device using the nematic liquid crystal composition according to claim 1. 請求項1から4の何れかに記載のネマチック液晶組成物を用いたアクティブマトリックス液晶表示素子。


An active matrix liquid crystal display element using the nematic liquid crystal composition according to claim 1.


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