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◆ Chemistry - A European Journal2026-04-16· Catalysis

Near‐Infrared‐Responsive Catalysts for Gas‐Solid Phase Photocatalytic CO <sub>2</sub> Reduction: Design Strategies, Performance, Future Perspectives

Zihao Wang, Yu Sun, Xin Huang, Qiance Han, Zihao Xing, Jiangtao Jia, Guangshan Zhu

原始摘要(英文原文)· Original abstract
ABSTRACT The escalating atmospheric carbon dioxide (CO 2 ) concentration and depletion of fossil fuels have spurred intensive research into sustainable CO 2 conversion technologies. The photocatalytic CO 2 reduction reaction (CO 2 RR) in gas‐solid phase systems offers distinct advantages over liquid‐phase counterparts, including enhanced mass transfer, simplified product separation and reduced side reactions. Notably, near‐infrared (NIR) light constitutes approximately 50% of the solar spectrum; however, traditional photocatalysts rarely utilize this low‐energy region, thereby limiting overall solar‐to‐chemical conversion efficiency. This review systematically summarizes the rationale, design strategies and catalytic performance of NIR‐responsive photocatalysts for gas‐solid phase CO 2 RR. Key approaches include the engineering of metallic/narrow‐bandgap conductors, the introduction of defects/intermediate bands, the construction of plasmonic heterojunctions, atomic‐level doping, the integration of single‐atom active sites and the development of metal‐free photothermal systems. These strategies address core challenges such as extending spectral response, enhancing charge separation and optimizing CO 2 activation. Representative catalysts exhibit efficient NIR‐driven CO 2 reduction to value‐added products (e.g., carbon monoxide, methane, methanol) with high selectivity and stability. This review provides critical insights into unlocking full‐spectrum solar energy utilization and advancing practical CO 2 RR technologies for carbon neutrality.
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Near‐Infrared‐Responsive Catalysts for Gas‐Solid Phase Photocatalytic CO <sub>2</sub> Reduction: Design Strategies, Performance, Future Perspectives — 科研速览 Science Skim