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Semiconductor-Based Photoelectrochemical Conversion of Carbon Dioxide: Stepping Towards Artificial Photosynthesis

Journal

CHEMISTRY-AN ASIAN JOURNAL
Volume 13, Issue 2, Pages 127-142

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/asia.201701596

Keywords

carbon dioxide reduction; electrochemistry; heterogeneous catalysis; photosynthesis; semiconductors

Funding

  1. World Premier International Research Center Initiative (WPI Initiative) on Materials Nano-architectonics (MANA), MEXT (Japan)
  2. National Basic Research Program of China (973 Program) [2014CB239301]
  3. National Natural Science Foundation of China [21633004]

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The photoelectrochemical (PEC) carbon dioxide reduction process stands out as a promising avenue for the conversion of solar energy into chemical feedstocks, among various methods available for carbon dioxide mitigation. Semiconductors derived from cheap and abundant elements are interesting candidates for catalysis. Whether employed as intrinsic semiconductors or hybridized with metallic cocatalysts, biocatalysts, and metal molecular complexes, semiconductor photocathodes exhibit good performance and low overpotential during carbon dioxide reduction. Apart from focusing on carbon dioxide reduction materials and chemistry, PEC cells towards standalone devices that use photohybrid electrodes or solar cells have also been a hot topic in recent research. An overview of the state-of-the-art progress in PEC carbon dioxide reduction is presented and a deep understanding of the catalysts of carbon dioxide reduction is also given.

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