Tykarska Marzena, Klucznik Barbara, Dziaduszek Jerzy, Jóźwiak Stanisław
Institute of Chemistry, Military University of Technology, ul. gen. Sylwestra Kaliskiego 2, 00-908 Warsaw, Poland.
Institute of Materials Science and Engineering, Military University of Technology, ul. gen. Sylwestra Kaliskiego 2, 00-908 Warsaw, Poland.
Materials (Basel). 2024 Aug 28;17(17):4256. doi: 10.3390/ma17174256.
This work aims to determine how the nematic twist-bend phase (N) of bismesogens containing two rigid parts of cyanobiphenyls connected with a linking chain containing n = 7, 9, and 11 methylene groups behaves in mixtures with structurally similar cyanobiphenyls nCB, n = 4-12, 14. The whole phase diagrams are presented for the CB7CB-nCB system. For the other systems, CB9CB-nCB and CB11CB-nCB, only curves corresponding to N-N phase transition are presented. Based on the temperature-concentration range of the existence of N phase, it was established that an increase in the alkyl chain length of CBnCB causes an increase in the stability of the N phase. But surprisingly, an increase in the alkyl chain length of nCB compounds does not change the slope of the N-N equilibrium line on phase diagrams. It is slightly bigger when the nCB compound has the same length of alkyl chain as the length of the linking group of a bismesogen. XRD studies were carried out for two mixtures.
这项工作旨在确定含有两个由含n = 7、9和11个亚甲基的连接链相连的氰基联苯刚性部分的双介晶的向列扭曲弯曲相(N)在与结构相似的氰基联苯nCB(n = 4 - 12、14)混合时的行为。给出了CB7CB - nCB体系的完整相图。对于其他体系CB9CB - nCB和CB11CB - nCB,仅给出了对应于N - N相变的曲线。基于N相存在的温度 - 浓度范围,确定了CBnCB烷基链长度的增加会导致N相稳定性的增加。但令人惊讶的是,nCB化合物烷基链长度的增加并不会改变相图上N - N平衡线的斜率。当nCB化合物的烷基链长度与双介晶连接基团的长度相同时,该斜率会稍大一些。对两种混合物进行了X射线衍射研究。