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掺杂金纳米棒的液晶动态网络表现出增强的光致动控制。

Liquid-Crystalline Dynamic Networks Doped with Gold Nanorods Showing Enhanced Photocontrol of Actuation.

机构信息

State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu, 610065, China.

Département de chimie, Université de Sherbrooke, Sherbrooke, Québec, J1K 2R1, Canada.

出版信息

Adv Mater. 2018 Apr;30(14):e1706597. doi: 10.1002/adma.201706597. Epub 2018 Feb 12.

Abstract

A near-infrared-light (NIR)- and UV-light-responsive polymer nanocomposite is synthesized by doping polymer-grafted gold nanorods into azobenzene liquid-crystalline dynamic networks (AuNR-ALCNs). The effects of the two different photoresponsive mechanisms, i.e., the photochemical reaction of azobenzene and the photothermal effect from the surface plasmon resonance of the AuNRs, are investigated by monitoring both the NIR- and UV-light-induced contraction forces of the oriented AuNR-ALCNs. By taking advantage of the material's easy processability, bilayer-structured actuators can be fabricated to display photocontrollable bending/unbending directions, as well as localized actuations through programmed alignment of azobenzene mesogens in selected regions. Versatile and complex motions enabled by the enhanced photocontrol of actuation are demonstrated, including plastic "athletes" that can execute light-controlled push-ups or sit-ups, and a light-driven caterpillar-inspired walker that can crawl forward on a ratcheted substrate at a speed of about 13 mm min . Moreover, the photomechanical effects arising from the two types of light-triggered molecular motion, i.e., the trans-cis photoisomerization and a liquid-crystalline-isotropic phase transition of the azobenzene mesogens, are added up to design a polymer "crane" that is capable of performing light-controlled, robot-like, concerted macroscopic motions including grasping, lifting up, lowering down, and releasing an object.

摘要

一种近红外光(NIR)和紫外光响应的聚合物纳米复合材料是通过将接枝聚合物的金纳米棒掺杂到偶氮苯液晶动态网络(AuNR-ALCNs)中合成的。通过监测定向 AuNR-ALCNs 的 NIR 和紫外光诱导收缩力,研究了两种不同光响应机制的影响,即偶氮苯的光化学反应和 AuNRs 的表面等离子体共振的光热效应。利用材料的易加工性,可以制造双层结构的致动器,以显示光可控的弯曲/不弯曲方向,以及通过在选定区域中对偶氮苯介晶进行编程取向实现局部致动。通过增强致动的光控制,演示了多种复杂的运动,包括可以执行光控俯卧撑或仰卧起坐的塑料“运动员”,以及可以在棘轮基底上以约 13mm min 的速度爬行前进的光驱动毛毛虫启发式步行者。此外,两种类型的光触发分子运动(即偶氮苯介晶的反式顺式光异构化和液晶各向同性相转变)产生的光机械效应被加起来,以设计一种能够执行光控、类机器人、协同宏观运动的聚合物“起重机”,包括抓取、提起、放下和释放物体。

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