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氧化石墨烯/液晶网络复合材料的光驱动自持振荡器表现出振幅和频率叠加

Light-Powered Self-Sustained Oscillators of Graphene Oxide/Liquid Crystalline Network Composites Showing Amplitude and Frequency Superposition.

作者信息

Wang Jianchuang, Yang Bowen, Yu Mingming, Yu Haifeng

机构信息

School of Material Science and Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Peking University, Beijing 100871, People's Republic of China.

College of Chemistry, Zhengzhou University, Zhengzhou, Henan 450001, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 6;14(13):15632-15640. doi: 10.1021/acsami.2c00680. Epub 2022 Mar 25.

Abstract

Light-activated self-oscillators have drawn enormous attention for their potential applications in mobile machines, energy harvesting, signal modulation, etc. Herein, we report one graphene oxide (GO)/liquid crystalline network (LCN) actuator that presents a unique light-activated oscillation with amplitude and frequency superposition. The GO/LCN composite film is prepared by the one-step polymerization of LC monomers, which favors a splay orientation in LC cells made by gluing together two glass sheets, one coated with photothermal agent GO and the other coated with a rubbed polyimide alignment layer. Owing to the asymmetric contraction/expansion, changing the cutting direction gives rise to notably different actuation behaviors for GO/LCN composite films. Moreover, it twists a little during the deflection process as a result of experimental error during the cutting process, which may cause the strip to be cut inaccurately. When the composite film is embedded in a self-shadowing system, it produces an unconventional hybrid oscillation mode upon near-infrared light irradiation, i.e., bending and twisting oscillation coupled. Furthermore, when the aspect ratio of the film decreases, the twisting mode is suppressed and the actuator changes from a coupled mode to a single bending mode. The proposed strategy may extend the application of GO/LCN composite materials and enrich light-activated self-oscillating behaviors.

摘要

光激活自振荡器因其在移动机器、能量收集、信号调制等方面的潜在应用而备受关注。在此,我们报道了一种氧化石墨烯(GO)/液晶网络(LCN)致动器,它呈现出独特的具有振幅和频率叠加的光激活振荡。GO/LCN复合膜通过液晶单体的一步聚合制备,这有利于在由两块玻璃板粘合在一起制成的液晶盒中形成展向取向,其中一块玻璃板涂有光热剂GO,另一块涂有摩擦聚酰亚胺取向层。由于不对称收缩/膨胀,改变切割方向会导致GO/LCN复合膜产生明显不同的驱动行为。此外,由于切割过程中的实验误差,它在偏转过程中会稍微扭曲,这可能导致条带切割不准确。当复合膜嵌入自遮挡系统中时,在近红外光照射下会产生一种非常规的混合振荡模式,即弯曲和扭曲振荡耦合。此外,当膜的长宽比减小时,扭曲模式受到抑制,致动器从耦合模式转变为单一弯曲模式。所提出的策略可能会扩展GO/LCN复合材料的应用,并丰富光激活自振荡行为。

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