A case of antiferrochirality in a liquid crystal phase of counter-rotating staircases

Author:

Li Ya-xinORCID,Gao Hong-fei,Zhang Rui-bin,Gabana Kutlwano,Chang Qing,Gehring Gillian A.,Cheng Xiao-hong,Zeng Xiang-bing,Ungar GoranORCID

Abstract

AbstractHelical structures continue to inspire, prompted by examples such as DNA double-helix and alpha-helix in proteins. Most synthetic polymers also crystallize as helices, which relieves steric clashes by twisting, while keeping the molecules straight for their ordered packing. In columnar liquid crystals, which often display useful optoelectronic properties, overall helical chirality can be induced by inclusion of chiral chemical groups or dopants; these bias molecular twist to either left or right, analogous to a magnetic field aligning the spins in a paramagnet. In this work, however, we show that liquid-crystalline columns with long-range helical order can form by spontaneous self-assembly of straight- or bent-rod molecules without inclusion of any chiral moiety. A complex lattice with Fddd symmetry and 8 columns per unit cell (4 right-, 4 left-handed) characterizes this “antiferrochiral” structure. In selected compounds it allows close packing of their fluorescent groups reducing their bandgap and giving them promising light-emitting properties.

Funder

National Science Foundation of China | National Natural Science Foundation of China-Yunnan Joint Fund

RCUK | Engineering and Physical Sciences Research Council

111 Project 2.0 of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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