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手性分子马达化学动力学驱动的自组装螺旋超结构中的刺激导向动态重构

Stimuli-Directed Dynamic Reconfiguration in Self-Organized Helical Superstructures Enabled by Chemical Kinetics of Chiral Molecular Motors.

作者信息

Sun Jian, Lan Ruochen, Gao Yanzi, Wang Meng, Zhang Wanshu, Wang Ling, Zhang Lanying, Yang Zhou, Yang Huai

机构信息

Department of Materials Science and Engineering University of Science and Technology Beijing Beijing 100083 P. R. China.

Department of Materials Science and Engineering College of Engineering Peking University Beijing 100871 P. R. China.

出版信息

Adv Sci (Weinh). 2017 Dec 1;5(2):1700613. doi: 10.1002/advs.201700613. eCollection 2018 Feb.

Abstract

Dynamic controllability of self-organized helical superstructures in spatial dimensions is a key step to promote bottom-up artificial nanoarchitectures and functional devices for diverse applications in a variety of areas. Here, a light-driven chiral overcrowded alkene molecular motor with rod-like substituent is designed and synthesized, and its thermal isomerization reaction exhibits an increasing structural entropy effect on chemical kinetic analysis in anisotropic achiral liquid crystal host than that in isotropic organic liquid. Interestingly, the stimuli-directed angular orientation motion of helical axes in the self-organized helical superstructures doped with the chiral motors enables the dynamic reconfiguration between the planar (thermostationary) and focal conic (photostationary) states. The reversible micromorphology deformation processes are compatible with the free energy fluctuation of self-organized helical superstructures and the chemical kinetics of chiral motors under different conditions. Furthermore, stimuli-directed reversible nonmechanical beam steering is achieved in dynamic hidden periodic photopatterns with reconfigurable attributes prerecorded with a corresponding photomask and photoinduced polymerization.

摘要

自组织螺旋超结构在空间维度上的动态可控性是推动自下而上的人工纳米结构和功能器件在各个领域实现多样化应用的关键一步。在此,设计并合成了一种带有棒状取代基的光驱动手性过度拥挤烯烃分子马达,其热异构化反应在各向异性非手性液晶主体中的化学动力学分析中比在各向同性有机液体中表现出更大的结构熵效应。有趣的是,掺杂有手性马达的自组织螺旋超结构中螺旋轴的刺激导向角取向运动能够实现平面(热稳态)和焦锥(光稳态)状态之间的动态重构。可逆的微观形态变形过程与不同条件下自组织螺旋超结构的自由能波动以及手性马达的化学动力学相兼容。此外,在具有通过相应光掩模预记录的可重构属性的动态隐藏周期性光图案以及光诱导聚合中实现了刺激导向的可逆非机械光束转向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcb2/5827101/38055d5a93bf/ADVS-5-1700613-g001.jpg

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