电化学
纳米技术
材料科学
电解
可扩展性
电极
工艺工程
计算机科学
化学
工程类
物理化学
数据库
电解质
作者
Lei Ge,Hesamoddin Rabiee,Mengran Li,Siddhartha Subramanian,Yao Zheng,Joong Hee Lee,Thomas Burdyny,Hao Wang
出处
期刊:Chem
[Elsevier BV]
日期:2022-01-10
卷期号:8 (3): 663-692
被引量:130
标识
DOI:10.1016/j.chempr.2021.12.002
摘要
Electrochemical conversion of gaseous CO2 to value-added products and fuels is a promising approach to achieve net-zero CO2 emission energy systems. Significant efforts have been achieved in the design and synthesis of highly active and selective electrocatalysts for this reaction and their reaction mechanism. To perform an efficient conversion and desired product selectivity in practical applications, we need an active, cost-effective, stable, and scalable electrolyzer design. Membrane-electrode assemblies (MEAs) can be an efficient solution to address the key challenges in the aqueous gas diffusion electrodes (GDE), e.g., ohmic resistances and complex reactor design. This review presents a critical overview of recent advances in experimental design and simulation of MEAs for CO2 reduction reaction, including the shortcomings and remedial strategies. In the last section, the remaining challenges and future research opportunities are suggested to support the advancement of CO2 electrochemical technologies.
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