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Virus-templated iridium oxide-gold hybrid eanowires for electrochromic application

机译:Virus-templated铱oxide-gold混合eanowires电致变色的应用程序

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摘要

A highly porous electrode comprised of biologically templated iridium oxide-gold (IrO2-Au) hybrid nanowires is introduced for electrochromic applications. A filamentous M13 virus is genetically engineered to display IrO2-binding peptides on the viral surface and used as a template for the self-assembly of IrO2 nanoclusters into a nanowire. The open porous morphology of the prepared nanowire film facilitates ion transport. Subsequently, the redox kinetics of the IrO2 nanowires seems to be limited by the electric resistance of the nanowire film. To increase the electron mobility in the nanowires, gold nanoparticles are chemically linked to the virus prior to the IrO2 mineralization, forming a gold nanostring structure along the long axis of the virus. The resulting IrO2-Au hybrid nanowires exhibit a switching time of 35 ms for coloration and 25 ms for bleaching with a transmission change of about 30.5% at 425 nm. These values represent almost an order of magnitude faster switching responses than those of an IrO2 nanowire film having the similar optical contrast. This work shows that genetically engineered viruses can serve as versatile templates to co-assemble multiple functional molecules, enabling control of the electrochemical properties of nanomaterials.
机译:一个高度多孔电极组成的生物模板化铱oxide-gold(IrO2-Au)介绍了混合纳米线电致变色的应用程序。病毒基因工程来显示IrO2-binding肽在病毒表面作为模板用于IrO2的自组装制备成纳米线。法制备的纳米线的形态的电影促进离子运输。似乎IrO2纳米线的氧化还原动力学有限的电阻纳米线的电影。在纳米线中,金纳米粒子化学与病毒IrO2之前矿化,形成黄金nanostring病毒的结构沿长轴。结果IrO2-Au混合纳米线表现出开关时间35女士的着色和25 ms与传输变化的漂白30.5%在425 nm。数量级的速度转换反应有比IrO2纳米线的电影类似的光学对比度。基因工程病毒可以作为通用的模板co-assemble多个功能分子,使控制的纳米材料的电化学性能。

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