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Strategies and Challenges of Utilizing Cation Effects in Membrane Electrode Assemblies for CO2 Reduction
Yanhui Sun1, Xuemei Du1, Honghao Fan1
1Advanced Catalytic Materials Research Center, School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, P. R. China.
None:
Electrocatalytic CO2 reduction in membrane electrode assembly (MEA) systems is a promising technology, enabling direct CO2 transport to the catalyst layers and reducing ohmic resistance. While electrolyte cations are demonstrated to effectively enhance the rate and the selectivity of electrochemical reduction of CO2, their implementation in electrolyte-free MEA electrolyzers faces significant challenges. This concept review examines key strategies for utilizing cations in MEA configurations, categorizing them into three methods: 1) incorporation of alkali metal cations into catalyst layers, 2) integration of organic cations into the cathode, and 3) mitigation of salt precipitation on the gas diffusion layers. By summarizing the challenges and proposed strategies, this review aims to provide guidance for the development of more efficient cation utilization approaches and future research in MEA-based CO2 reduction systems.
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