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Enhanced Performance of Porphyrin-Modified CuO-Co3O4 Heterojunction as a Photoelectrocatalyst for Methanol Oxidation
Journal article   Peer reviewed

Enhanced Performance of Porphyrin-Modified CuO-Co3O4 Heterojunction as a Photoelectrocatalyst for Methanol Oxidation

Shu Li, Zhenchao Liu, Ying Chu, Xiaohan Li, Qijing Bu and Qingyun Liu
Langmuir, Vol.39(31), pp.10863-10871
08/08/2023
PMID: 37491702

Abstract

It is desirable to improve the methanol oxidation ability of heterojunction catalysts because of their potential in the field of electrocatalysis. In this article, we have integrated CuO/Co3O4 heterojunction with porphyrin (TCPP) for TCPP/Cu2Co1. The results demonstrate that the specific surface area and electrochemical active surface area (ECSA) are enhanced, and the unblocked separation and transfer of photogenerated charges are guaranteed by the matched band energy of CuO, Co3O4, and TCPP. As such, the photocatalytic methanol oxidation reaction (MOR) performance and stability of TCPP/Cu2Co1 are significantly enhanced compared with those of Cu2Co1. This study provides a promising pathway for the design of MOR catalysts with high MOR activity.

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