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Electromechanical actuation of CNT/PVDF composite films based on a bridge configuration

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【作者】 谷孝刚夏小刚张楠肖卓建范庆霞杨丰肖仕奇陈辉亮周维亚解思深

【Author】 Xiaogang Gu;Xiaogang Xia;Nan Zhang;Zhuojian Xiao;Qingxia Fan;Feng Yang;Shiqi Xiao;Huiliang Chen;Weiya Zhou;Sishen Xie;Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences;Beijing Key Laboratory for Advanced Functional Materials and Structure Research;University of Chinese Academy of Sciences;

【机构】 Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of SciencesBeijing Key Laboratory for Advanced Functional Materials and Structure ResearchUniversity of Chinese Academy of Sciences

【摘要】 Bridged strips consisting of carbon nanotubes and poly(vinylidene fluoride) are developed, which exhibit notable deflection in response to very low driven voltages(< 1 V), because of both the excellent conductivity of the unique carbon nanotube film and the powerful thermal expansion capability of the polymer. The actuators demonstrate periodic vibrations motivated by the alternating signals. The amplitude of displacement is dependent not only on the driven voltage but also on the applied frequency. The mechanism of actuation is confirmed to be the thermal power induced by the electrical heating. By accelerating the dissipation of heat, the vibration response at higher frequencies can be significantly enhanced.The useful locomotion shows great promise in potential applications such as miniature smart devices and micro power generators.

【Abstract】 Bridged strips consisting of carbon nanotubes and poly(vinylidene fluoride) are developed, which exhibit notable deflection in response to very low driven voltages(< 1 V), because of both the excellent conductivity of the unique carbon nanotube film and the powerful thermal expansion capability of the polymer. The actuators demonstrate periodic vibrations motivated by the alternating signals. The amplitude of displacement is dependent not only on the driven voltage but also on the applied frequency. The mechanism of actuation is confirmed to be the thermal power induced by the electrical heating. By accelerating the dissipation of heat, the vibration response at higher frequencies can be significantly enhanced.The useful locomotion shows great promise in potential applications such as miniature smart devices and micro power generators.

【基金】 Project supported by the National Basic Research Program of China(Grant No.2012CB932302);the National Natural Science Foundation of China(Grant Nos.11634014,51172271,and 51372269);the “Strategic Priority Research Program” of the Chinese Academy of Sciences(Grant No.XDA09040202)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2017年07期
  • 【分类号】TB383.2
  • 【被引频次】3
  • 【下载频次】49
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