首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Tuning the Catalytic Activity of Ru@Pt Core-Shell Nanoparticles for the Oxygen Reduction Reaction by Varying the Shell Thickness
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Tuning the Catalytic Activity of Ru@Pt Core-Shell Nanoparticles for the Oxygen Reduction Reaction by Varying the Shell Thickness

机译:通过改变壳的厚度来调节Ru @ Pt核壳纳米粒子对氧还原反应的催化活性

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摘要

The kinetics of the oxygen reduction reaction (ORR) was investigated in acid solutions on Pt monolayers that were deposited on carbon-supported Ru nanoparticles using the rotating disk electrode technique. The Pt mass and specific ORR activities greatly depend on the number of Pt monolayers, and the optimum activity occurs with two Pt monolayers. Density functional theory calculations showed that Pt overlayers destabilize O* and OH* with respect to pure Pt, leading to more favorable hydrogenation kinetics. However, with only a single Pt overlayer, the destabilization is too much, and O—O bond breaking becomes rate limiting. Two to three Pt monolayers supported on the Ru core of our nanoparticles lead to increased activity. This work demonstrates that one can modulate the ORR activity of Pt monolayers supported on other metals by eliminating a part of the ligand effect by increasing the thickness of the Pt shell on top of the supporting metal surface.
机译:使用旋转圆盘电极技术在Pt单层上的酸性溶液中研究了氧还原反应(ORR)的动力学,该酸性溶液沉积在碳负载的Ru纳米颗粒上。 Pt的质量和特定的ORR活性很大程度上取决于Pt单层的数量,最佳活性出现在两个Pt单层上。密度泛函理论计算表明,Pt覆盖层相对于纯Pt会使O *和OH *不稳定,从而导致更有利的氢化动力学。然而,仅具有单个Pt覆盖层,去稳定化太多,并且OO键断裂成为速率限制。负载在我们纳米颗粒Ru核上的两到三个Pt单层导致活性增加。这项工作表明,通过增加支撑金属表面顶部Pt壳的厚度,消除一部分配体效应,可以调节负载在其他金属上的Pt单层的ORR活性。

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