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首页> 外文期刊>Angewandte Chemie >Synergy between Plasmonic and Electrocatalytic Activation of Methanol Oxidation on Palladium-Silver Alloy Nanotubes
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Synergy between Plasmonic and Electrocatalytic Activation of Methanol Oxidation on Palladium-Silver Alloy Nanotubes

机译:钯 - 银合金纳米管中甲醇氧化等离子体和电催化激活的协同作用

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摘要

Localized surface plasmon resonance (LSPR) excitation of noble metal nanoparticles has been shown to accelerate and drive photochemical reactions. Here, LSPR excitation is shown to enhance the electrocatalysis of a fuel-cell-relevant reaction. The electrocatalyst consists of PdxAg alloy nanotubes (NTs), which combine the catalytic activity of Pd toward the methanol oxidation reaction (MOR) and the visible-light plasmonic response of Ag. The alloy electrocatalyst exhibits enhanced MOR activity under LSPR excitation with significantly higher current densities and a shift to more positive potentials. The modulation of MOR activity is ascribed primarily to hot holes generated by LSPR excitation of the PdxAg NTs.
机译:已经显示贵金属纳米颗粒的局部表面等离子体共振(LSPR)激发,以加速和驱动光化学反应。 这里,显示LSPR激发以增强燃料电池相关反应的电常见。 电催化剂由PDxag合金纳米管(NTS)组成,其将Pd的催化活性与甲醇氧化反应(MOR)和Ag的可见光等级反应组合。 合金电催化剂在LSPR激发下表现出增强的MOR活动,具有明显更高的电流密度和转变为更积极的电位。 MOR活动的调制主要是由PDXAG NTS的LSPR激发产生的热孔。

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