首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Thin ferroelectric liquid crystal layers: mechanical stability and fast electro-optical response, connection between molecule design and surface properties
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Thin ferroelectric liquid crystal layers: mechanical stability and fast electro-optical response, connection between molecule design and surface properties

机译:铁电液晶薄层:机械稳定性和快速的电光响应,分子设计和表面性能之间的联系

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摘要

The storage of information after mechanical stimuli even without applied electrical field is based on the elastic properties of the ferroelectric liquid crystal (FLC) material and the anchoring energy. It is favourable for chiral molecules with extended length, such as 4,4′-di-substituted quaterphenyls and 4,4′-di-substituted quinquephenyls, which have in series-connected benzene rings, but not separated by bridging fragments. To obtain the required stability with a reasonable switching speed of about 50 μs 4,4′-di-substituted chiral quaterphenyls with two chiral centres on the same wing has been synthesised. Here, the switching is much faster compared to compounds with same quaterphenyl fragment, but only with one chiral centre.
机译:即使没有施加电场,机械刺激后的信息存储也基于铁电液晶(FLC)材料的弹性特性和锚定能。对于具有延长长度的手性分子,例如4,4′-二取代的四苯基和4,4′-二取代的五苯基,它们具有串联的苯环,但不被桥连的片段分开是有利的。为了获得所需的稳定性,并以大约50μs的合理转换速度合成了在同一翅膀上具有两个手性中心的4,4'-二取代手性四元四苯基。在此,与具有相同四苯基片段但仅具有一个手性中心的化合物相比,转换要快得多。

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