首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Revealing the Details of the Surface Composition of Electrochemically Prepared Au@Pd Core@Shell Nanoparticles with in Situ EXAFS
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Revealing the Details of the Surface Composition of Electrochemically Prepared Au@Pd Core@Shell Nanoparticles with in Situ EXAFS

机译:用原位EXAFS揭示电化学制备的Au @ Pd核@壳纳米粒子表面组成的细节

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摘要

Carbon supported Au@Pd core@sheIl nanoparticles were prepared using two methods based on displacement of a Cu-under potential deposited (upd) layer; the standard method, in which a single Cu-upd layer is formed and then displaced, and a Cu-upd-mediated deposition method, wherein the Pd displaces the Cu-upd layer during the Cu deposition. The resulting materials were characterized using in situ extended X~ray absorption fine structure as a function of the applied potential in an electrochemical cell at both the Au L3 and Pd K absorption edges. This detailed structural analysis shows that the standard, single Cu-upd layer method results in the formation of Pd clusters or islands on the Au core rather than a complete monolayer shell, while the Cu-upd-mediated method produces a mixed/alloyed PdAu shell.
机译:碳负载的Au @ Pd核@壳纳米颗粒是使用两种方法制备的,这些方法基于Cu电位下沉积(upd)层的位移。标准方法是在其中形成单个Cu-upd层,然后进行置换;以及Cu-upd介导的沉积方法,其中Pd在Cu沉积过程中置换Cu-upd层。使用原位扩展的X射线吸收精细结构对所得材料进行表征,该结构是Au L3和Pd K吸收边缘处电化学电池中施加电势的函数。这种详细的结构分析表明,标准的单Cu-upd层方法会在Au核而不是完整的单层壳上形成Pd簇或岛,而Cu-upd介导的方法会生成混合/合金化的PdAu壳。

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