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◆ Electrochemistry Communications2026-03-09· Chemistry

Electroactive species in reactive CO2 capture

Yitong Li, Xiaobo Zheng, Guoqiang Zhao, Hui Li, Zhi Zheng, Peng Li, Tianyi Ma

原始摘要(英文原文)· Original abstract
Electrochemical reactive carbon dioxide capture (eRCC) couples CO 2 absorption and conversion, yet the identity of the true electroactive carbon species remains contested. Across carbonate- and amine-based systems, accumulating evidence demonstrates that dissolved CO 2 , regenerated from capture equilibria, dominates CO formation under practical operating conditions. Transport-controlled measurements reveal that CO generation rate scales with dissolved CO 2 activity and is bounded by its mass-transfer limit. Direct carbamate reduction emerges only within a narrow, deeply reducing regime and does not generally replace molecular CO 2 as the operative substrate. In contrast, specific diamine-derived zwitterionic carbamates can attain kinetic relevance when structural and interfacial factors align. Clarifying this potential-dependent crossover resolves longstanding ambiguity and establishes interfacial CO 2 availability, rather than bulk speciation alone, as the decisive parameter for rational eRCC design. • The electroactive carbon species in eRCC is critically reassessed. • A mechanistic framework connecting CO 2 capture equilibria and electroreduction is developed. • Evidence for dissolved CO 2 and carbamate pathways is systematically compared.
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