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Virus-templated Au and Au/Pt Core/shell Nanowires and Their Electrocatalytic Activitives for Fuel Cell Applications

机译:病毒模板au和金/铂睿/壳纳米线及其电activitives燃料电池应用

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摘要

A facile synthetic route was developed to make Au nanowires (NWs) from surfactant-mediated bio-mineralization of a genetically engineered M13 phage with specific Au binding peptides. From the selective interaction between Au binding M13 phage and Au ions in aqueous solution, Au NWs with uniform diameter were synthesized at room temperature with yields greater than 98 % without the need for size selection. The diameters of Au NWs were controlled from 10 nm to 50 nm. The Au NWs were found to be active for electrocatalytic oxidation of CO molecules for all sizes, where the activity was highly dependent on the surface facets of Au NWs. This low-temperature high yield method of preparing Au NWs was further extended to the synthesis of Au/Pt core/shell NWs with controlled coverage of Pt shell layers. Electro-catalytic studies of ethanol oxidation with different Pt loading showed enhanced activity relative to a commercial supported Pt catalyst, indicative of the dual functionality of Pt for the ethanol oxidation and Au for the anti-poisoning component of Pt. These new one-dimensional noble metal NWs with controlled compositions could facilitate the design of new alloy materials with tunable properties.
机译:开发了一种容易合成途径以使Au纳米线(NWS)从遗传工程M13噬菌体的表面活性剂介导的生物矿化具有特异性Au结合肽。从Au结合M13噬菌体和水溶液中的Au离子之间的选择性相互作用,在室温下合成具有均匀直径的AuNWS,收率大于98%,而无需尺寸选择。 Au NWs的直径由10nm至50nm控制。发现AuNWS为所有尺寸的CO分子的电催化氧化是活性的,其中活性高度依赖于AuNWS的表面刻面。这种低温高产制备Au NWS的方法进一步扩展到具有Pt壳层的受控覆盖率的Au / Pt核心/壳NW的合成。用不同PT载荷的乙醇氧化的电催化研究显示相对于商业支持的Pt催化剂的增强活性,指示Pt的乙醇氧化与Pt的抗中毒组分的乙醇氧化和Au的双重官能度。具有受控组合物的这些新的一维贵金属NW可以促进具有可调谐性质的新合金材料。

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