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Carbon Nanotubule Membranes for An Electrochemically-Driven Artificial Muscle
作者姓名:车广礼
作者单位:科罗拉多州立大学
摘    要:1 INTRODUCTIONTherehasbeenconsiderablerecentinterestinelectrochemicallydrivenactuators ,sometimescalled“artificialmuscles”1- 4.Suchactuatorstypicallyconsistofathinfilmofapolymericmaterialcoatedontoaflexibleplanarelectrodesurface .Thisassemblybends (“flexes”)inresponsetoanelectrochemicalperturbationofthepolymericmaterial.Thebent ,flexed ,statecanthenbereturnedtothestraight ,relaxed ,statebyreversaloftheelectro chemicalperturbation .Electrochemically drivenactuatorsofthistypebasedonthe…


Carbon Nanotubule Membranes for An Electrochemically-Driven Artificial Muscle
CHE Guang-li.Carbon Nanotubule Membranes for An Electrochemically-Driven Artificial Muscle[J].Journal of Bohai University:Natural Science Edition,2003,24(3):1-10.
Authors:CHE Guang-li
Abstract:A new type of electrichemically-driven actuator is described.This actuator uses graphitic carbon as the electroactive materical(as opposed to the polymeric films used in previous devices of this type),and it is the first example of an actuator based on a nanostructured material.The actuator consists of branched carbon nanotubules embedded within the pores of a microporous alumina template membrane.Electrochemical Li + intercalation causes this nanotubule-containing membrane to flex,and electrochemical de-intercalation causes the membrane to relax to its original position.The characteristics of this new actuator are described here.
Keywords:actuator  membrane  interlation  nanotubule  experiment
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