铂金
电催化剂
纳米线
催化作用
材料科学
钴
电化学
化学工程
纳米技术
金属间化合物
电化学能量转换
电极
析氧
化学
物理化学
复合材料
冶金
工程类
生物化学
合金
作者
Lingzheng Bu,Shaojun Guo,Xu Zhang,Xuan Shen,Dong Su,Gang Lü,Xing Zhu,Jianlin Yao,Jun Guo,Xiaoqing Huang
摘要
Abstract Despite intense research in past decades, the lack of high-performance catalysts for fuel cell reactions remains a challenge in realizing fuel cell technologies for transportation applications. Here we report a facile strategy for synthesizing hierarchical platinum-cobalt nanowires with high-index, platinum-rich facets and ordered intermetallic structure. These structural features enable unprecedented performance for the oxygen reduction and alcohol oxidation reactions. The specific/mass activities of the platinum-cobalt nanowires for oxygen reduction reaction are 39.6/33.7 times higher than commercial Pt/C catalyst, respectively. Density functional theory simulations reveal that the active threefold hollow sites on the platinum-rich high-index facets provide an additional factor in enhancing oxygen reduction reaction activities. The nanowires are stable in the electrochemical conditions and also thermally stable. This work may represent a key step towards scalable production of high-performance platinum-based nanowires for applications in catalysis and energy conversion.
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