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首页> 外文期刊>Angewandte Chemie >Janus Nanocages of Platinum-Group Metals and Their Use as Effective Dual-Electrocatalysts
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Janus Nanocages of Platinum-Group Metals and Their Use as Effective Dual-Electrocatalysts

机译:铂金属的Janus Nanages及其用作有效的双电催化剂

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摘要

Janus nanocages with distinctive platinum-group metals on the outer and inner surfaces can naturally catalyze at least two different reactions. Here we report a general method based on successive deposition and then selective etching for the facile synthesis of such nanocages. We have fabricated 11 different types of Janus nanocages characterized by a uniform size and well-defined {100} facets, together with porous, ultrathin, asymmetric walls up to 1.6 nm thick. When tested as dual-electrocatalysts toward oxygen reduction and evolution reactions, the Janus nanocages based on Pt and Ir exhibited superior activities depending on the thickness and relative position of the metal layer. Density functional theory studies suggest that the alloy composition and surface structure of the nanocages both play important roles in enhancing the electrocatalytic activities by modulating the stability of key reaction intermediates.
机译:Janus纳米笼的外表面和内表面带有独特的铂族金属,可以自然催化至少两种不同的反应。在这里,我们报告了一种基于连续沉积和选择性蚀刻的通用方法,以方便地合成这种纳米笼。我们已经制备了11种不同类型的Janus纳米笼,其特征是尺寸均匀,有明确的{100}面,以及厚度高达1.6nm的多孔、超薄、不对称壁。当作为氧还原和析氧反应的双电催化剂进行测试时,基于Pt和Ir的Janus纳米笼显示出优越的活性,这取决于金属层的厚度和相对位置。密度泛函理论研究表明,合金成分和纳米笼的表面结构都通过调节关键反应中间体的稳定性在增强电催化活性方面发挥重要作用。

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