Pt‐Sn/Sb Interaction Induces Reversed Charge Transfer and Selective Hydroxyl Adsorption for Enhanced Hydrogen Electro‐Oxidation

Author:

Wang Xiaoning1ORCID,Gao Xiaochun1ORCID,Tang Li1,Sun Puhua2,Liu Ying1,Hou Shaoqi1,Tong Yanfu3,Yin Xitao1,Ma Xiaoguang1

Affiliation:

1. School of Physics and Optoelectronic Engineering Ludong University Yantai 264000 P. R. China

2. Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto Ontario M5S 2E8 Canada

3. School of Materials Science and Engineering China University of Petroleum Qingdao 266580 P. R. China

Abstract

AbstractThe challenges encountered by Pt‐based electrocatalysts in alkaline hydrogen oxidation reaction include high Pt dosage and conflicting demands for modulating adsorption strengths among diverse intermediates. Here, an ultrasmall Pt cluster grafted on antimony tin oxide nanocrystalline with strong electron donor ability to minimal Pt dosage yet maximized electrocatalytic performance is developed. Mechanism studies show that the formation of Pt–Sn/Sb interaction at the heterointerface and the resultant reversed electron transfer selectively enhance the adsorption for OH while concurrently weakening the binding strength for *H and CO toward Pt clusters. This accelerates the kinetics of H2/CO oxidation by promoting the binding of OH species with *H/*CO, yielding the catalyst with up to 5.7‐fold higher mass‐specific activity than benchmark Pt/C and increased resistance to CO poisoning. This work demonstrates the rational design of the synergistic multi‐site interactions towards advanced Pt‐based catalysts.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Taishan Scholar Foundation of Shandong Province

Publisher

Wiley

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