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首页> 外文期刊>Journal of the Chemical Society. Perkin Transactions 2 >The synthesis and mesomorphic properties of 4,4 ''-dialkyl-2,2 ',3-and 2,2 ',3 '-trifluoro-1,1 ': 4 ',1 ''-terphenyls for high dielectric biaxiality ferroelectric liquid crystal mixtures
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The synthesis and mesomorphic properties of 4,4 ''-dialkyl-2,2 ',3-and 2,2 ',3 '-trifluoro-1,1 ': 4 ',1 ''-terphenyls for high dielectric biaxiality ferroelectric liquid crystal mixtures

机译:高介电性双轴铁电体4,4''-二烷基-2,2',3-和2,2',3'-三氟-1,1':4',1''-三联苯的合成及介晶性质液晶混合物

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Two series of liquid crystalline terphenyls with terminal alkyl chains have been synthesised with three lateral fluoro substituents in close proximity to each other. Two terminal alkyl chains were employed to minimise viscosity, maximise solubility and generate low melting points. The first series of materials employs fluoro substituents at an outer-edge position to maximise the smectic phase C phase stability, whereas the second series has the fluoro substituents in the centre of the molecule in an attempt to minimise melting points, but surprisingly the melting points of the former compounds are much lower. The synthetic routes to all of the materials involved low-temperature lithiations to generate arylboronic acids which were then involved in sequential, selective palladium-catalysed cross-coupling reactions. Many of the materials produced have extremely low melting points and some exhibit the smectic C phase at room temperature. In general, the 2,2',3- and 2,2',3'-patterns of lateral fluoro substitution in 1,1:4',1 "-terphenyls generate materials of low viscosity and high lateral dipole. In particular, many materials from the first series have low melting points and exhibit the smectic C phase, hence they show great promise for the formulation of ferroelectric mixtures with a high dielectric biaxiality which is very important in tau V minimum driving schemes; whereas the materials from the second series are nematogens and hence could be useful for vertically aligned nematic devices. [References: 20]
机译:已经合成了具有末端烷基链的两个系列的液晶三联苯,其具有三个彼此紧邻的侧向氟取代基。使用两个末端烷基链以最小化粘度,最大化溶解度并产生低熔点。第一组材料在外边缘位置使用氟取代基以使近晶相C相的稳定性最大化,而第二组材料在分子中心具有氟取代基,试图将熔点降至最低,但令人惊讶的是熔点前一种化合物的含量要低得多。合成所有材料的合成路线涉及低温锂化反应生成芳基硼酸,然后芳基硼酸参与顺序的,选择性的钯催化的交叉偶联反应。所生产的许多材料的熔点都非常低,有些在室温下表现出近晶C相。通常,在1,1:4',1“-三联苯中进行侧向氟取代的2,2',3-和2,2',3'-模式会产生低粘度和高侧向偶极子的材料。第一个系列中的许多材料具有较低的熔点并表现出近晶C相,因此它们对于高介电双轴性的铁电混合物的配制具有广阔的前景,这在tau V最小驱动方案中非常重要;而第二个系列的材料系列是杀线虫剂,因此可能对垂直排列的向列装置有用[参考文献:20]

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