甲烷化
光热治疗
催化作用
光热效应
材料科学
纳米技术
格式化
化学
钌
光化学
反应机理
光热光谱学
化学工程
金属
多相催化
作者
Kang Xie,Zhourong Xiao,L G Zhang,Xinlei Han,Rui Hao,Xinyi Tan,Fei Ye,Kaihang Sun,Ji‐Jun Zou,Desong Wang
出处
期刊:Small
[Wiley]
日期:2026-05-27
卷期号:22 (37): e73947-e73947
被引量:1
摘要
ABSTRACT The excessive emission of CO 2 has triggered a range of environmental challenges, including ocean acidification and the greenhouse effect. To mitigate this issue, the catalytic conversion of CO 2 into value‐added chemicals has garnered significant attention. Among various approaches, photothermal catalytic CO 2 methanation stands out due to its mild reaction conditions and high product selectivity. In recent years, photothermal catalytic CO 2 methanation has made significant progress in the study of reaction mechanisms, regulation of catalyst structure and properties, and corresponding photothermal reactors. This review begins by examining the mechanism of CO 2 methanation, detailing the advantages of photothermal catalysis over thermal or photocatalysis. Then, the reaction pathways and key intermediates involved in CO 2 methanation were categorized and summarized, including the direct cleavage pathway, the reverse water‐gas shift (RWGS) pathway, and the formate pathway. Subsequently, the recent advances in photothermal catalytic CO 2 methanation catalysts, including oxide‐supported metal catalysts, carbide‐supported metal catalysts, and Metal–organic frameworks (MOFs) and their derivatives‐supported metal catalysts, were systematically summarized. Finally, the future and development prospects of photothermal CO 2 methanation are discussed. This review provides the latest reference for designing highly efficient photothermal CO 2 methanation catalysts for the future utilization of CO 2 resources.
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