Carbon‐Based Photothermal Actuators

材料科学 执行机构 光热治疗 碳纳米管 纳米技术 光热效应 纳米材料 石墨烯 碳纤维 复合材料 计算机科学 复合数 人工智能
作者
Bing Han,Yong‐Lai Zhang,Qi‐Dai Chen,Hong‐Bo Sun
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:28 (40) 被引量:374
标识
DOI:10.1002/adfm.201802235
摘要

Abstract Actuators that can convert environmental stimuli into mechanical work are widely used in intelligent systems, robots, and micromechanics. To produce robust and sensitive actuators of different scales, efforts are devoted to developing effective actuating schemes and functional materials for actuator design. Carbon‐based nanomaterials have emerged as preferred candidates for different actuating systems because of their low cost, ease of processing, mechanical strength, and excellent physical/chemical properties. Especially, due to their excellent photothermal activity, which includes both optical absorption and thermal conductivities, carbon‐based materials have shown great potential for use in photothermal actuators. Herein, the recent advances in photothermal actuators based on various carbon allotropes, including graphite, carbon nanotubes, amorphous carbon, graphene and its derivatives, are reviewed. Different photothermal actuating schemes, including photothermal effect–induced expansion, desorption, phase change, surface tension gradient creation, and actuation under magnetic levitation, are summarized, and the light‐to‐heat and heat‐to‐work conversion mechanisms are discussed. Carbon‐based photothermal actuators that feature high light‐to‐work conversion efficiency, mechanical robustness, and noncontact manipulation hold great promise for future autonomous systems.
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