催化作用
合金
电催化剂
氧还原
化学工程
氧还原反应
多孔性
铂金
三元运算
材料科学
制作
化学
碳纤维
电化学
无机化学
纳米技术
燃料电池
冶金
复合材料
物理化学
电极
有机化学
复合数
病理
程序设计语言
替代医学
工程类
医学
计算机科学
作者
Lei Huang,Yaqiong Su,Ruijuan Qi,Dai Dang,Yanyang Qin,Shibo Xi,Shahid Zaman,Bo You,Shujiang Ding,Bao Yu Xia
标识
DOI:10.1002/anie.202111426
摘要
Integrated fabrication through the strong interaction between catalyst and carrier is crucial to realize efficient oxygen electrocatalysis for fuel cells. We report herein a porous Pt-rich alloy encapsulated by graphitic carbon via integration engineering, where a synergistic catalysis between ternary PtCuCo alloy and graphitic Co-N-C results in the optimized reaction pathway and improved oxygen reduction reaction (ORR) performance. The hybrid catalyst PtCuCo@Co-N-C delivers a mass activity of 1.14 A mgPt-1 at 0.9 V vs. RHE and a peak power density of 960 mW cm-2 in the full-cell assessment, outperforming commercial Pt/C catalyst (0.12 A mgPt-1 and 780 mW cm-2 ). Experimental results combined with theoretical simulations suggest that the mutual assistance between porous Pt alloy and Co-N-C accounts for the enhanced catalytic performance. Such integrated engineering concept is significant for strengthening the anti-corrosion capabilities and improving the ORR performance of Pt-based catalysts.
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