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基于光驱动分子马达的光响应功能材料。

Photo-responsive functional materials based on light-driven molecular motors.

作者信息

Deng Yanping, Long Guiying, Zhang Yang, Zhao Wei, Zhou Guofu, Feringa Ben L, Chen Jiawen

机构信息

SCNU-UG International Joint Laboratory of Molecular Science and Displays, National Center for International Research on Green Optoelectronics, South China Normal University, Guangzhou, 510006, China.

Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747AG, Groningen, The Netherlands.

出版信息

Light Sci Appl. 2024 Mar 1;13(1):63. doi: 10.1038/s41377-024-01391-8.

Abstract

In the past two decades, the research and development of light-triggered molecular machines have mainly focused on developing molecular devices at the nanoscale. A key scientific issue in the field is how to amplify the controlled motion of molecules at the nanoscale along multiple length scales, such as the mesoscopic or the macroscopic scale, or in a more practical perspective, how to convert molecular motion into changes of properties of a macroscopic material. Light-driven molecular motors are able to perform repetitive unidirectional rotation upon irradiation, which offers unique opportunities for responsive macroscopic systems. With several reviews that focus on the design, synthesis and operation of the motors at the nanoscale, photo-responsive macroscopic materials based on light-driven molecular motors have not been comprehensively summarized. In the present review, we first discuss the strategy of confining absolute molecular rotation into relative rotation by grafting motors on surfaces. Secondly, examples of self-assemble motors in supramolecular polymers with high internal order are illustrated. Moreover, we will focus on building of motors in a covalently linked system such as polymeric gels and polymeric liquid crystals to generate complex responsive functions. Finally, a perspective toward future developments and opportunities is given. This review helps us getting a more and more clear picture and understanding on how complex movement can be programmed in light-responsive systems and how man-made adaptive materials can be invented, which can serve as an important guideline for further design of complex and advanced responsive materials.

摘要

在过去二十年中,光触发分子机器的研发主要集中在纳米尺度分子器件的开发上。该领域的一个关键科学问题是如何在纳米尺度上沿着多个长度尺度放大分子的可控运动,比如介观或宏观尺度,或者从更实际的角度来看,如何将分子运动转化为宏观材料性质的变化。光驱动分子马达在光照下能够进行重复的单向旋转,这为响应性宏观系统提供了独特的机遇。尽管已有几篇综述聚焦于纳米尺度马达的设计、合成与运作,但基于光驱动分子马达的光响应宏观材料尚未得到全面总结。在本综述中,我们首先讨论通过将马达接枝到表面,将绝对分子旋转限制为相对旋转的策略。其次,列举了具有高度内序的超分子聚合物中的自组装马达实例。此外,我们将着重介绍在诸如聚合物凝胶和聚合物液晶等共价连接体系中构建马达以产生复杂响应功能的情况。最后,给出了对未来发展和机遇的展望。这篇综述有助于我们越来越清晰地了解如何在光响应系统中对复杂运动进行编程,以及如何发明人造自适应材料,可为进一步设计复杂和先进的响应材料提供重要指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7e3/10907585/85c29682a832/41377_2024_1391_Fig1_HTML.jpg

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