Mandle Richard J, Goodby John W
Department of Chemistry, University of York, Heslington, York, YO10 5DD, United Kingdom.
Chemphyschem. 2016 Apr 4;17(7):967-70. doi: 10.1002/cphc.201600038. Epub 2016 Jan 25.
The twist-bend nematic phase (NTB ) has been described as the structural link between the untilted uniaxial nematic phase (N) and the helical chiral nematic phase (N*). The NTB phase exhibits phenomena of fundamental importance to science, that is, 1) the spontaneous formation of a helical pitch on the nanometer scale in a fluid and 2) the spontaneous breaking of mirror symmetry, leading to the emergence of chiral domains in an achiral system. In this Communication, we present a study on T49 [bis(4-(9-(4-((4-cyanobenzoyl)oxy)phenyl)nonyl)phenyl) 4,4'-(nonane-1,9-diyl)dibenzoate], a liquid-crystalline oligomer exhibiting the twist-bend nematic phase, which has a molecular length that is of comparable dimensions to the sub-10 nm pitch determined for CB9CB, and provide new insights into the differentiation between the nano- and macro-science for self-assembling supermolecular systems.
扭曲弯曲向列相(NTB)被描述为非倾斜单轴向列相(N)和螺旋手性向列相(N*)之间的结构纽带。NTB相展现出对科学至关重要的现象,即:1)在流体中自发形成纳米尺度的螺旋节距;2)自发打破镜像对称性,导致在非手性体系中出现手性畴。在本通讯中,我们对T49 [双(4-(9-(4-((4-氰基苯甲酰基)氧基)苯基)壬基)苯基) 4,4'-(壬烷-1,9-二基)二苯甲酸酯]进行了研究,它是一种呈现扭曲弯曲向列相的液晶低聚物,其分子长度与为CB9CB确定的小于10 nm的节距尺寸相当,并为自组装超分子体系的纳米科学和宏观科学之间的差异提供了新的见解。