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Governing the morphology of Pt-Au heteronanocrystals with improved electrocatalytic performance

机译:管理Pt-Au的形态heteronanocrystals改善electrocatalytic性能

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摘要

Platinum-gold heteronanostructures comprising either dimer (Pt-Au) or core-satellite (Pt@Au) configurations were synthesized by means of a seeded growth procedure using platinum nanodendrites as seeds. Careful control of the reduction kinetics of the gold precursor can be used to direct the nucleation and growth of gold nanoparticles on either one or multiple surface sites simultaneously, leading to the formation of either dimers or core-satellite nanoparticles, respectively, in high yields. Characterization by electron tomography and high resolution electron microscopy provided a better understanding of the actual three-dimensional particle morphology, as well as the Au-Pt interface, revealing quasi-epitaxial growth of Au on Pt. The prepared Pt-Au bimetallic nanostructures are highly efficient catalysts for ethanol oxidation in alkaline solution, showing accurate selectivity, high sensitivity, and improved efficiency by generating higher current densities than their monometallic counterparts.
机译:铂金heteronanostructures组成二聚体(Pt-Au)或core-satellite (Pt@Au)配置是通过合成的使用白金种子生长过程nanodendrites作为种子。减少黄金前体的动力学用于直接成核和生长的黄金纳米粒子在一个或多个表面同时网站,导致的形成二聚体或core-satellite纳米颗粒,分别在高收益率。电子断层扫描和高分辨率电子显微镜提供了一个更好的理解实际三维粒子形态,Au-Pt接口,发人深省quasi-epitaxial增长的非盟Pt。准备Pt-Au双金属纳米结构是高度高效催化剂对乙醇氧化碱性溶液,显示准确的选择性,高灵敏度,提高效率产生比他们更高的电流密度单本位制的。

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