金属间化合物
材料科学
催化作用
三元运算
纳米材料基催化剂
化学工程
金属
纳米技术
纳米颗粒
冶金
化学
有机化学
计算机科学
工程类
程序设计语言
合金
作者
Xiaoxiao Zeng,Yudan Jing,Saisai Gao,Wencong Zhang,Yang Zhang,Hanwen Liu,Chao Liang,Chenchen Ji,Yi Rao,Jianbo Wu,Bin Wang,Yonggang Yao,Shengchun Yang
标识
DOI:10.1038/s41467-023-43294-z
摘要
Abstract Supported metal catalysts often suffer from rapid degradation under harsh conditions due to material failure and weak metal-support interaction. Here we propose using reductive hydrogenated borophene to in-situ synthesize Pt/B/C catalysts with small sizes (~2.5 nm), high-density dispersion (up to 80 wt% Pt ), and promising stability, originating from forming Pt-B bond which are theoretically ~5× stronger than Pt-C. Based on the Pt/B/C module, a series (~18 kinds) of carbon supported binary, ternary, quaternary, and quinary Pt intermetallic compound nanocatalysts with sub-4 nm size are synthesized. Thanks to the stable intermetallics and strong metal-support interaction, annealing at 1000 °C does not cause those nanoparticles sintering. They also show much improved activity and stability in electrocatalytic oxygen reduction reaction. Therefore, by introducing the boron chemistry, the hydrogenated borophene derived multielement catalysts enable the synergy of small size, high loading, stable anchoring, and flexible compositions, thus demonstrating high versatility toward efficient and durable catalysis.
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