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首页> 外文期刊>Journal of nanoscience and nanotechnology >Sonochemical synthesis of platinum nanowires and their applications as electro-chemical actuators
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Sonochemical synthesis of platinum nanowires and their applications as electro-chemical actuators

机译:声纳法合成铂纳米线及其在电化学致动器中的应用

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摘要

We report the sonochemical synthesis of platinum nanowires on carbon nanotube templates and their application in electrochemical actuation. The fabrication of platinum nanowires was achieved by suspending well separated single wall carbon nanotubes in isopropyl alcohol and ultra-sonically agitating the solution in the presence of dihydrogen hexachloroplatinate. The platinum nanowires were further processed into micro and macro scale free standing sheets by vacuum filtration. An electrochemical cantilever actuator was constructed using the platinum nanowire sheet which actuated under electrical bias. Displacement of similar to 3 mm was readily achieved when the electrical potential was swept at low voltages between -2 V and 2 V at a scan rate of 200 mV/s. The actuator showed the metallic actuation characteristics instead of that from carbon nanotubes. These results show the applicability of metallic nanomaterials for actuation technologies.
机译:我们报告了碳纳米管模板上铂纳米线的声化学合成及其在电化学驱动中的应用。铂纳米线的制造是通过将分离良好的单壁碳纳米管悬浮在异丙醇中,然后在六氯铂酸二氢盐的存在下超声搅拌溶液来实现的。通过真空过滤将铂纳米线进一步加工成微米级和宏观级的无支撑片。使用在电偏压下致动的铂纳米线片构造电化学悬臂致动器。当以200 mV / s的扫描速率在-2 V和2 V之间的低电压下扫描电位时,很容易实现接近3 mm的位移。致动器显示出金属致动特性,而不是碳纳米管。这些结果表明金属纳米材料对致动技术的适用性。

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