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具有预定聚多巴胺涂层的液晶网络薄膜的近红外光驱动自持续振荡

Near-Infrared Photodriven Self-Sustained Oscillation of Liquid-Crystalline Network Film with Predesignated Polydopamine Coating.

作者信息

Lan Ruochen, Sun Jian, Shen Chen, Huang Rui, Zhang Zhongping, Zhang Lanying, Wang Ling, Yang Huai

机构信息

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

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

出版信息

Adv Mater. 2020 Apr;32(14):e1906319. doi: 10.1002/adma.201906319. Epub 2020 Feb 20.

Abstract

Movement is one of the vital features of living systems, and remote control of bioinspired soft robotic systems in a precise, contactless and harmless way is extremely desirable but challenging. A near-infrared (NIR) photodriven polymeric oscillator is designed and fabricated by selectively coating a mussel-inspired polydopamine (PDA) polymer layer on the surface of splay-aligned liquid crystalline network (LCN) film. The oscillating motions of the LCN oscillators can be facilely manipulated by tuning light intensity and film thickness. More importantly, the programmability of the PDA coating enables the oscillating behaviors of LCN film to be predesignated and finely adjusted by coating the film with PDA locally and repeatedly. The self-oscillating movement mechanism can be attributed to the temperature oscillation at the PDA-coated LCN film since it is alternatively exposed and sheltered to the NIR-light irradiations. Owing to over 50% NIR irradiation in solar spectrum, PDA-coated film is found to oscillate upon exposure of focused sunlight, presenting great potential in fabrication of solar power generation devices. This provides a versatile strategy to fabricate NIR-light-actuated polymeric oscillators, providing inspirations in the development of biological soft robots and advanced biomimetic devices.

摘要

运动是生命系统的重要特征之一,以精确、非接触且无害的方式对受生物启发的软机器人系统进行远程控制极具吸引力,但也具有挑战性。通过在伸展排列的液晶网络(LCN)薄膜表面选择性地涂覆受贻贝启发的聚多巴胺(PDA)聚合物层,设计并制造了一种近红外(NIR)光驱动的聚合物振荡器。通过调节光强度和薄膜厚度,可以轻松地控制LCN振荡器的振荡运动。更重要的是,PDA涂层的可编程性使得通过局部和重复地用PDA涂覆薄膜,能够预先指定并精细调整LCN薄膜的振荡行为。自振荡运动机制可归因于涂覆有PDA的LCN薄膜处的温度振荡,因为它交替地暴露于和遮蔽于近红外光照射下。由于太阳光谱中超过50%的近红外辐射,发现涂覆有PDA的薄膜在聚焦阳光照射下会振荡,这在太阳能发电装置的制造中具有巨大潜力。这提供了一种制造近红外光驱动聚合物振荡器的通用策略,为生物软机器人和先进仿生装置的发展提供了灵感。

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