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- W3022894010 endingPage "481" @default.
- W3022894010 startingPage "481" @default.
- W3022894010 abstract "Electrochemical reduction of CO2 to value-added chemicals and fuels is a promising approach to store renewable energy while closing the anthropogenic carbon cycle. Despite significant advances in developing new electrocatalysts, this system still lacks enough energy conversion efficiency to become a viable technology for industrial applications. To develop an active and selective electrocatalyst and engineer the reaction environment to achieve high energy conversion efficiency, we need to improve our knowledge of the reaction mechanism and material structure under reaction conditions. In situ spectroscopies are among the most powerful tools which enable measurements of the system under real conditions. These methods provide information about reaction intermediates and possible reaction pathways, electrocatalyst structure and active sites, as well as the effect of the reaction environment on products distribution. This review aims to highlight the utilization of in situ spectroscopic methods that enhance our understanding of the CO2 reduction reaction. Infrared, Raman, X-ray absorption, X-ray photoelectron, and mass spectroscopies are discussed here. The critical challenges associated with current state-of-the-art systems are identified and insights on emerging prospects are discussed." @default.
- W3022894010 created "2020-05-13" @default.
- W3022894010 creator A5006250732 @default.
- W3022894010 creator A5013704951 @default.
- W3022894010 date "2020-04-28" @default.
- W3022894010 modified "2023-10-01" @default.
- W3022894010 title "In Situ Spectroscopic Methods for Electrocatalytic CO2 Reduction" @default.
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