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Chirality transfer from atropisomeric chiral inducers to nematic and smectic liquid crystals – synthesis and characterization of di- and tetra-substituted axially chiral binaphthyl derivatives

机译:从阻转异构手性诱导剂向手性和近晶型液晶的手性转移-二和四取代的轴向手性联萘衍生物的合成和表征

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摘要

The chirality transfer of axially chiral binaphthyl derivatives bearing liquid crystal (LC) moieties at then, n′ positions (n = 3, 4, 6) of the binaphthyl rings to nematic (N) and smectic (S) LCs is investigated. Chiral nematic LCs (N[*]-LCs) are prepared by adding a small amount of the chiral binaphthyl derivative into host N-LCs composed of cyanobiphenyl mesogen cores. The binaphthyl derivative with phenylcyclohexyl (PCH) type LC moieties at the 4, 4′ positions of the binaphthyl ring [D-4, 4′] exhibits a low helical twisting power (HTP) of 11 μm[−1]. In contrast, those with LC moieties at the 3, 3′ and 6, 6′ positions of the binaphthyl rings [D-3, 3′ and D-6, 6′] exhibit high HTPs of 153 μm[−1] and 154 μm[−1], respectively. Next, the binaphthyl derivatives are added into two types of S-LCs withphenylbenzoate mesogen cores: 4-(4-methylpentyloxy)phenyl-4-(decyloxy)benzoate [PhB1] and 4-(3-methylpentyloxy)phenyl-4-(decyloxy)benzoate [PhB2]. The mixture of the host LC, PhB1 or PhB2with the chiral dopant, D-3, 3′ or D-6, 6′ shows chiral smectic LCs C (SC[*]-LCs). The highly twisted SC[*] phases with helical pitches of 1.2–1.4 μm are prepared in PhB1 and PhB2 by using the chiral dopant of D-6, 6′. It is concluded that D-6, 6′ has a large helical twisting power and is the most favourable atropisomeric chiral inducer for chirality transfer to both N-LCs and S-LCs.
机译:然后研究了在轴向,手性的双萘环的n'位(n = 3、4、6)处带有液晶(LC)部分的轴向手性联萘衍生物向向列(N)和近晶(S)LC的手性转移。通过将少量的手性联萘衍生物添加到由氰基联苯液晶元核心组成的宿主N-LC中,可以制备手性向列型LC(N [*]-LC)。在联萘环[D-4、4']的4、4'位置带有苯基环己基(PCH)型LC部分的联萘衍生物表现出11μm[-1]的低螺旋扭曲力(HTP)。相反,在双萘基环[D-3、3'和D-6、6']的3、3'和6、6'位置处具有LC部分的化合物显示出153μm[-1]和154的高HTP分别为μm[-1]。接下来,将联萘衍生物添加到具有苯甲酸酯基液晶元核的两种S-LC中:4-(4-甲基戊氧基)苯基-4-(癸氧基)苯甲酸酯[PhB1]和4-(3-甲基戊氧基)苯基-4-(癸氧基) )苯甲酸酯[PhB2]。主体LC PhB1或PhB2与手性掺杂剂D-3、3'或D-6、6'的混合物显示出手性近晶LC C(SC [*]-LC)。通过使用D-6、6'的手性掺杂剂,可以在PhB1和PhB2中制备螺旋间距为1.2–1.4μm的高度扭曲的SC [*]相。可以得出结论,D-6、6'具有较大的螺旋扭曲力,是将手性转移至N-LC和S-LC的最有利的阻转异构手性诱导剂。

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