立体中心
中胚层
化学
相(物质)
液晶
手性(物理)
结晶学
小泡
化学物理
聚合物
各向同性
超分子化学
绝对构型
立体化学
液晶
材料科学
有机化学
晶体结构
光学
物理
对映选择合成
手征对称破缺
光电子学
生物化学
量子力学
夸克
膜
Nambu–Jona Lasinio模型
催化作用
作者
Xiaoxiao Cheng,Tengfei Miao,Gong Zhang,Jiaying Guo,Zhenyang Zhou,Wei Zhang
摘要
Controlling the secondary phase in chiral liquid-crystalline (LC) polymers is of great importance since it transfers and amplifies molecular information to the macroscopic properties. However, the chiral superstructures of the LC phase are determined exclusively by the inherent configuration of the parent chiral source. Here, we report the switchable supramolecular chirality of heteronuclear structures by the untraditional command between common chiral "sergeant" units and various achiral "soldier" units. Different chiral induction pathways between sergeants and soldiers were observed for copolymer assemblies with mesogenic and non-mesogenic soldier units, demonstrating the formation of a helical phase independent of the absolute configuration of the stereocenter. In the presence of non-mesogenic soldier units, the classical SaS (Sergeants and Soldiers) effect in the amorphous phase was observed; whereas in a full LC system, bidirectional command of sergeants was activated in response to the phase transition. Meanwhile, a full spectrum of morphological phase diagrams including spherical micelles, worms, nanowires, spindles, tadpoles, anisotropic ellipsoidal vesicles, and isotropic spherical vesicles were successfully achieved. Such spindles, tadpoles, and anisotropic ellipsoidal vesicles have rarely been obtained previously from chiral polymer systems.
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