过电位
材料科学
相(物质)
电化学
各向异性
化学工程
Crystal(编程语言)
结晶学
塔菲尔方程
纳米技术
电极
物理化学
有机化学
工程类
化学
物理
量子力学
程序设计语言
计算机科学
作者
Zhicheng Zhang,Guigao Liu,Xiaoya Cui,Bo Chen,Yihan Zhu,Yue Gong,Faisal Saleem,Shibo Xi,Yonghua Du,Armando Borgna,Zhuangchai Lai,Qinghua Zhang,Bing Li,Yun Zong,Yu Han,Lin Gu,Hua Zhang
标识
DOI:10.1002/adma.201801741
摘要
Abstract The rational design and synthesis of anisotropic 3D nanostructures with specific composition, morphology, surface structure, and crystal phase is of significant importance for their diverse applications. Here, the synthesis of well‐crystalline lotus‐thalamus‐shaped Pt‐Ni anisotropic superstructures (ASs) via a facile one‐pot solvothermal method is reported. The Pt‐Ni ASs with Pt‐rich surface are composed of one Ni‐rich “core” with face‐centered cubic (fcc) phase, Ni‐rich “arms” with hexagonal close‐packed phase protruding from the core, and facet‐selectively grown Pt‐rich “lotus seeds” with fcc phase on the end surfaces of the “arms.” Impressively, these unique Pt‐Ni ASs exhibit superior electrocatalytic activity and stability toward the hydrogen evolution reaction under alkaline conditions compared to commercial Pt/C and previously reported electrocatalysts. The obtained overpotential is as low as 27.7 mV at current density of 10 mA cm −2 , and the turnover frequency reaches 18.63 H 2 s −1 at the overpotential of 50 mV. This work provides a new strategy for the synthesis of highly anisotropic superstructures with a spatial heterogeneity to boost their promising application in catalytic reactions.
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