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通过给体-受体斯滕豪斯加合物的光开关实现的可调谐光热驱动

Tunable Photothermal Actuation Enabled by Photoswitching of Donor-Acceptor Stenhouse Adducts.

作者信息

Lee Jaejun, Sroda Miranda M, Kwon Younghoon, El-Arid Sara, Seshadri Serena, Gockowski Luke F, Hawkes Elliot W, Valentine Megan T, Read de Alaniz Javier

机构信息

Department of Chemistry and Biochemistry, University of California-Santa Barbara, Santa Barbara, California 93106, United States.

Department of Mechanical Engineering, University of California-Santa Barbara, Santa Barbara, California 93106, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 2;12(48):54075-54082. doi: 10.1021/acsami.0c15116. Epub 2020 Nov 19.

Abstract

We report a visible light-responsive bilayer actuator driven by the photothermal properties of a unique molecular photoswitch: donor-acceptor Stenhouse adduct (DASA). We demonstrate a synthetic platform to chemically conjugate DASA to a load-bearing poly(hexyl methacrylate) (PHMA) matrix via Diels-Alder click chemistry that enables access to stimuli-responsive materials on scale. By taking advantage of the negative photochromism and switching kinetics of DASA, we can tune the thermal expansion and actuation performance of DASA-PHMA under constant light intensity. This extends the capabilities of currently available responsive soft actuators for which mechanical response is determined exclusively by light intensity and enables the use of abundant broadband light sources to trigger tunable responses. We demonstrate actuation performance using a visible light-powered cantilever capable of lifting weight against gravity as well as a simple crawler. These results add a new strategy to the toolbox of tunable photothermal actuation by using the molecular photoswitch DASA.

摘要

我们报道了一种由独特分子光开关——给体-受体斯滕豪斯加合物(DASA)的光热特性驱动的可见光响应双层致动器。我们展示了一个合成平台,通过狄尔斯-阿尔德点击化学将DASA化学共轭到承载聚(甲基丙烯酸己酯)(PHMA)基质上,从而能够大规模制备刺激响应材料。通过利用DASA的负光致变色和开关动力学,我们可以在恒定光强度下调节DASA-PHMA的热膨胀和致动性能。这扩展了当前可用的响应性软致动器的能力,其机械响应仅由光强度决定,并使得能够使用丰富的宽带光源来触发可调响应。我们使用能够克服重力举起重物的可见光驱动悬臂以及简单的履带式机器人展示了致动性能。这些结果为通过使用分子光开关DASA进行可调光热致动的工具箱增添了一种新策略。

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