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Three-dimensional graphene-polypyrrole hybrid electrochemical actuator

机译:三维graphene-polypyrrole混合电化学致动器

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摘要

The advancement of mechanical actuators benefits from the development of new structural materials with prominent properties. A novel three-dimensional (3D) hydrothermally converted graphene and polypyrrole (G-PPy) hybrid electrochemical actuator is presented, which is prepared via a convenient hydrothermal process, followed by in situ electropolymerization of pyrrole. The 3D pore-interconnected G-PPy pillar exhibits strong actuation responses superior to pure graphene and PPy film. In response to the low potentials of ±0.8 V, the saturated strain of 3D G-PPy pillar can reach a record of 2.5%, which is more than 10 times higher than that of carbon nanotube film and about 3 times that of unitary graphene film under an applied potential of ±1.2 V. Also, the 3D G-PPy actuator exhibits high actuation durability with high operating load as demonstrated by an 11 day continuous measurement. Finally, a proof-of-concept application of 3D G-PPy as smart filler for on/off switch is also demonstrated, which indicates the great potential of the 3D G-PPy structure developed in this study for advanced actuator systems.
机译:机械执行机构的发展效益从结构新材料的开发与著名的属性。三维(3 d)热水地转换石墨烯和聚吡咯(G-PPy)混合提出了电化学致动器,这是准备通过一个方便的水热过程中,的原位electropolymerization紧随其后吡咯。展品优于强驱动响应纯石墨烯和PPy膜。低势的±0.8 V,饱和的3 d G-PPy支柱可以达到创纪录的2.5%,超过10倍的碳纳米管薄膜和单一的大约3倍石墨烯薄膜在±1.2的应用潜力诉,3 d G-PPy驱动器展品高驱动耐久性高工作负荷证明了11天连续测量。最后,一个3 d的概念验证应用G-PPy作为开/关开关智能填充演示,显示巨大的潜力3 d G-PPy结构在该研究中开发的先进的传动系统。

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