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◆ CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)2026-02-01· Photocatalysis

Atomic-level Mn incorporation into Co3O4 for selective CO2 photoreduction in pure water under dilute CO2 atmosphere

Ganghua Zhou, Jie Liu, Longyun Zhang, Chuanzhou Bi, Hangmin Xu, Hangmin Xu, Weiyi Jiang, Xingwang Zhu, Xin Ning, Hui Xu, Hui Xu, Xiaozhi Wang

原始摘要(英文原文)· Original abstract
The photocatalytic carbon dioxide reduction represents a promising route for solar-to-chemical energy conversion, enabling the sustainable production of carbon-neutral fuels. Achieving high selectivity toward specific products remains a major challenge due to the complex multi-electron transfer pathways and competing reaction intermediates. Herein, the Mn-doped Co 3 O 4 (MMC) photocatalysts are synthesized based on an “impregnation-pyrolysis” strategy using in situ synthesized Mn-doped ZIF-67 as a precursor. The MOF-templated approach enables uniform Mn incorporation into the Co 3 O 4 lattice while preserving a hierarchical porous architecture, thereby enhancing active-site accessibility and modulating the electronic environment of catalyst. The introduction of guest Mn effectively suppresses the competing hydrogen evolution reaction. As a result, the optimized 2MMC catalyst shows a 12.8-fold increase in CO production over undoped Co 3 O 4 and enables selective CO 2 conversion in pure water with diluted CO 2 . Photoelectrochemical characterizations reveal that guest Mn doping accelerates charge separation dynamics. In-situ irradiated X-ray photoelectron spectroscopy, in-situ Fourier transformed infrared spectra, and theoretical calculations unveil a Mn-mediated pathway that selectively promotes the formation of *CO 2 and *CO intermediates. This work provides new atomic-level insights into the selective photocatalytic conversion of CO 2 under green and sustainable conditions.
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Atomic-level Mn incorporation into Co3O4 for selective CO2 photoreduction in pure water under dilute CO2 atmosphere — 科研速览 Science Skim