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Recent Advances in Electrochemical Carboxylation with CO2
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2024-09-03 , DOI: 10.1021/acs.accounts.4c00417 Guo-Quan Sun 1 , Li-Li Liao 1 , Chuan-Kun Ran 1 , Jian-Heng Ye 1 , Da-Gang Yu 1
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2024-09-03 , DOI: 10.1021/acs.accounts.4c00417 Guo-Quan Sun 1 , Li-Li Liao 1 , Chuan-Kun Ran 1 , Jian-Heng Ye 1 , Da-Gang Yu 1
Affiliation
Carbon dioxide (CO2) is recognized as a greenhouse gas and a common waste product. Simultaneously, it serves as an advantageous and commercially available C1 building block to generate valuable chemicals. Particularly, carboxylation with CO2 is considered a significant method for the direct and sustainable production of important carboxylic acids. However, the utilization of CO2 is challenging owing to its thermodynamic stability and kinetic inertness. Recently, organic electrosynthesis has emerged as a promising approach that utilizes electrons or holes as environmentally friendly redox reagents to produce reactive intermediates in a controlled and selective manner. This technique holds great potential for the CO2 utilization.
中文翻译:
CO2 电化学羧化的最新进展
二氧化碳 (CO 2 ) 被认为是一种温室气体和一种常见的废物。同时,它还可以作为一种有利且可商用的 C1 构建模块来生产有价值的化学品。特别地,用CO 2进行羧化被认为是直接和可持续生产重要羧酸的重要方法。然而,由于CO 2的热力学稳定性和动力学惰性,其利用具有挑战性。最近,有机电合成已成为一种有前途的方法,它利用电子或空穴作为环境友好的氧化还原试剂,以受控和选择性的方式生产反应中间体。该技术对于CO 2 的利用具有巨大的潜力。
更新日期:2024-09-03
中文翻译:
CO2 电化学羧化的最新进展
二氧化碳 (CO 2 ) 被认为是一种温室气体和一种常见的废物。同时,它还可以作为一种有利且可商用的 C1 构建模块来生产有价值的化学品。特别地,用CO 2进行羧化被认为是直接和可持续生产重要羧酸的重要方法。然而,由于CO 2的热力学稳定性和动力学惰性,其利用具有挑战性。最近,有机电合成已成为一种有前途的方法,它利用电子或空穴作为环境友好的氧化还原试剂,以受控和选择性的方式生产反应中间体。该技术对于CO 2 的利用具有巨大的潜力。