掺杂剂
催化作用
材料科学
纳米线
镍
覆盖层
纳米技术
化学工程
铂金
兴奋剂
冶金
化学
物理化学
光电子学
有机化学
工程类
作者
Lei Gao,Tulai Sun,Xuli Chen,Zhilong Yang,Mengfan Li,Wenchuan Lai,Wenhua Zhang,Quan Yuan,Hongwen Huang
标识
DOI:10.1038/s41467-024-44788-0
摘要
Abstract Stabilizing active PtNi alloy catalyst toward oxygen reduction reaction is essential for fuel cell. Doping of specific metals is an empirical strategy, however, the atomistic insight into how dopant boosts the stability of PtNi catalyst still remains elusive. Here, with typical examples of Mo and Au dopants, we identify the distinct roles of Mo and Au in stabilizing PtNi nanowires catalysts. Specifically, due to the stronger interaction between atomic orbital for Ni-Mo and Pt-Au, the Mo dopant mainly suppresses the outward diffusion of Ni atoms while the Au dopant contributes to the stabilization of surface Pt overlayer. Inspired by this atomistic understanding, we rationally construct the PtNiMoAu nanowires by integrating the different functions of Mo and Au into one entity. Such catalyst assembled in fuel cell cathode thus presents both remarkable activity and durability, even surpassing the United States Department of Energy technical targets for 2025.
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