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Template electrodeposition of catalytic nanomotors

机译:催化纳米运动的模板电沉积

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The combination of nanomaterials with electrode materials has opened new horizons in electroanalytical chemistry, and in electrochemistry in general. Over the past two decades we have witnessed an enormous activity aimed at designing new electrochemical devices based on nanoparticles, nanotubes or nanowires, and towards the use of electrochemical routes - particularly template-assisted electrodeposition - for preparing nanostructured materials. The power of template-assisted electrochemical synthesis is demonstrated in this article towards the preparation and the realization of self-propelled catalytic nanomotors, ranging from Pt-Au nanowire motors to polymer/Pt microtube engines. Design considerations affecting the propulsion behavior of such catalytic nanomotors are discussed along with recent bioanalytical and environmental applications. Despite recent major advances, artificial nanomotors have a low efficiency compared to their natural counterparts. Hopefully, the present Faraday Discussion will stimulate other electrochemistry teams to contribute to the fascinating area of artificial nanomachines.
机译:用电极材料的纳米材料的组合在电分析化学和电化学中开辟了新的地平线。在过去的二十年中,我们目睹了一种旨在基于纳米颗粒,纳米管或纳米线的新型电化学装置的巨大活动,以及朝向使用电化学途径 - 特别是模板辅助电沉积 - 用于制备纳米结构的材料。在本文中对模板辅助电化学合成的功率朝向制备和实现自推进式催化纳米热量,从PT-Au纳米线电机到聚合物/ Pt微管发动机的制备和实现。讨论了影响这种催化纳米运动纳米运动的推进行为的设计考虑与近期生物分析和环境应用。尽管近期重大进展,但与自然对应物相比,人工纳米热管具有低效率。希望,目前的法拉第讨论将刺激其他电化学队,为人工纳米箱的迷人面积做出贡献。

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