In Situ Surface PtCu Alloying on Delafossite-type CuAlO 2 as Electrocatalyst for Enhanced Methanol Oxidation

Delafossite type oxide CuAlO 2 as a highly efficient methanol oxidation reaction catalyst support has been investigated in this work. Utilizing the sustained release of copper from CuAlO 2 layered structure, we developed a composite catalyst that was in situ formed PtCu alloy upon oxide via solvothe...

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Veröffentlicht in:Journal of the Electrochemical Society 2022-07, Vol.169 (7), p.76508
Hauptverfasser: Kong, Lingwei, He, Rong, Yang, Hailong, Xing, Wanpei, Zhang, Xulei, Zhang, Yan, Wang, Zi, Yang, Jianhua, Zhou, Chao, Sun, Limin, Liu, Hai, Bo, Maolin, Zhu, Wenhuan, Wei, Hao
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Sprache:eng
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Zusammenfassung:Delafossite type oxide CuAlO 2 as a highly efficient methanol oxidation reaction catalyst support has been investigated in this work. Utilizing the sustained release of copper from CuAlO 2 layered structure, we developed a composite catalyst that was in situ formed PtCu alloy upon oxide via solvothermal method. Owing to the metal-support interaction between PtCu alloy and CuAlO 2 , abundant oxygen defects and adsorbed hydroxyl groups were generated on the surface of composite catalyst, which were verified by structural characterizations and surface analysis. Density functional theory simulation further revealed that the in situ formation of PtCu alloy accompanied with superficial defects dramatically changed the geometry and electronic structures of the composite catalyst, resulting in a higher mass activity (990 mA/mg Pt ), specific activity (3.30 mA cm −2 ECSA ), and a superior reaction kinetics of MOR performance. This work proves delafossite type oxide CuAlO 2 as a potential support to facilitate the anti-CO poisoning ability of Pt-based catalysts.
ISSN:0013-4651
1945-7111
DOI:10.1149/1945-7111/ac7ef6