Lagerwall Jan P F
Experimental Soft Matter Physics group, Department of Physics and Materials Science, University of Luxembourg, Luxembourg, Luxembourg.
Liq Cryst. 2023 Dec 19;51(8-9):1296-1310. doi: 10.1080/02678292.2023.2292621. eCollection 2024.
Liquid crystal-forming cyanobiphenyls are truly extraordinary molecules that have had an enormous impact on liquid crystal research and applications since they were first synthesised. This impact is, on the one hand, due to the exceptionally convenient physical properties of the main characters, 5CB and 8CB, allowing easy experiments at room temperature, as well as their commercial availability at reasonable cost. On the other hand, the cyanobiphenyl chemical structure leads to some quite peculiar characteristics in terms of organisation at the molecular scale, which are sometimes well recognised and even utilised, but often the awareness of these peculiarities is not strong. This perspective article reviews the use of cyanobiphenyls in making liquid crystal shells and liquid crystal core fibres, in sensing, as a medium for simultaneously aligning and dispersing carbon nanotubes, and as highly useful solvents for reactive mesogens that can be polymerised into anisotropic networks. This choice is very much motivated by how cyanobiphenyls have impacted our group's research throughout the years, which is the basis for the examples I provide. Nevertheless, I believe they serve well to illustrate the immense usefulness of cyanobiphenyls in innovating research and applications related to liquid crystals.
形成液晶的氰基联苯是非常特别的分子,自首次合成以来,它们对液晶研究及应用产生了巨大影响。一方面,这种影响归因于主要代表物5CB和8CB格外便利的物理性质,这使得在室温下进行实验变得轻松,而且它们能以合理成本进行商业供应。另一方面,氰基联苯的化学结构在分子尺度的排列方面导致了一些颇为奇特的特性,这些特性有时得到了充分认识甚至加以利用,但对这些特性的认知往往并不强烈。这篇观点文章综述了氰基联苯在制造液晶壳层和液晶芯纤维、传感、作为同时排列和分散碳纳米管的介质以及作为可聚合成各向异性网络的反应性液晶基元的非常有用的溶剂等方面的应用。做出这种选择很大程度上是受氰基联苯多年来对我们团队研究产生的影响所驱动,这也是我所举例子的依据。然而,我认为它们能很好地说明氰基联苯在创新与液晶相关的研究及应用方面具有巨大的实用性。