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December 7, 2025Advanced Functional Materials

Tandem Catalysis for Photocatalytic Conversion of CO 2 into Solar Fuels: Mechanisms, Strategies, and Future Perspectives

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Authors

CDCheng DingTCTing-ting ChengYSYan Shen

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Overview

This review highlights advancements in photocatalytic strategies for CO2 conversion into solar fuels, suggesting improved redox reactions and system scalability.

Key Points

  • Photocatalytic conversion enhances CO2 reduction into solar fuels, addressing both kinetic and thermodynamic restrictions.
  • Key advancements include the use of heterojunctions and dual-active sites for improved charge separation and C─C coupling.
  • Analysis of recent architectures spans five categories, focusing on their potential benefits in photoreduction processes.
  • Challenges like interfacial engineering and product selectivity highlight the need for scalable tandem photocatalytic systems.

Cite This Study

Ding et al. (2025) studied this question.

synapsesocial.com/papers/694020ee2d562116f28fb0a3https://doi.org/10.1002/adfm.202528125
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Also Consider

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  1. 1Catalyst Design for Photocatalytic CO2 Reduction: Recent Advances, Challenges, and Future Perspectives2026
  2. 2Tandem Catalysis for Electrochemical CO <sub>2</sub> Reduction to C <sub>2+</sub> Products2026
  3. 3Toward efficient solar energy conversion: Emerging directions in photocatalysis and photoelectrocatalysis2026
  4. 4Recent Advances in Photothermal Catalysis for CO <sub>2</sub> Conversion to C1 Products2026
  5. 5Photocatalytic Redox Coupling Toward Simultaneous Energy Conversion and Chemical Synthesis: A Critical Review of Sacrificial-Agent-Free Systems2026