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Strategies in catalysts and electrolyzer design for electrochemical CO<sub>2</sub>reduction toward C<sub>2+</sub>products

Science Advances · 2020 · Vol. 6(8) · pp. eaay3111–eaay3111
Lei FanChuan XiaFangqi YangJun WangHaotian WangYingying Lü

Abstract

In light of environmental concerns and energy transition, electrochemical CO<sub>2</sub> reduction (ECR) to value-added multicarbon (C<sub>2</sub> <sub>+</sub>) fuels and chemicals, using renewable electricity, presents an elegant long-term solution to close the carbon cycle with added economic benefits as well. However, electrocatalytic C─C coupling in aqueous electrolytes is still an open challenge due to low selectivity, activity, and stability. Design of catalysts and reactors holds the key to addressing those challenges. We summarize recent progress in how to achieve efficient C─C coupling via ECR, with emphasis on strategies in electrocatalysts and electrocatalytic electrode/reactor design, and their corresponding mechanisms. In addition, current bottlenecks and future opportunities for C<sub>2</sub> <sub>+</sub> product generation is discussed. We aim to provide a detailed review of the state-of-the-art C─C coupling strategies to the community for further development and inspiration in both fundamental understanding and technological applications.

CO2 Reduction Techniques and CatalystsCarbon dioxide utilization in catalysisIonic liquids properties and applicationsElectrochemistryElectrolysisReduction (mathematics)CatalysisElectrocatalystMaterials scienceChemistryElectrodePhysical chemistryOrganic chemistry

Funding

  • National Natural Science Foundation of China
  • China Scholarship Council
  • National Natural Science Foundation of China-Yunnan Joint Fund
  • National Key Research and Development Program of China
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