Recent advances in understanding Li-CO2 electrochemistry

With ever-increasing demand for balancing CO 2 emissions and maximizing electrical energy supplies, Li-CO 2 electrochemistry, coupled with dual characteristics of advanced energy storage and effective CO 2 fixation, has been attracting considerable attention from researchers. Herein, we offer a real...

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Veröffentlicht in:Energy & environmental science 2019-03, Vol.12 (3), p.887-922
Hauptverfasser: Liu, Bao, Sun, Yinglun, Liu, Lingyang, Chen, Jiangtao, Yang, Bingjun, Xu, Shan, Yan, Xingbin
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Sprache:eng
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Zusammenfassung:With ever-increasing demand for balancing CO 2 emissions and maximizing electrical energy supplies, Li-CO 2 electrochemistry, coupled with dual characteristics of advanced energy storage and effective CO 2 fixation, has been attracting considerable attention from researchers. Herein, we offer a real-time, in-depth, and overall review of the latest research progress concerning CO 2 reduction/evolution reaction mechanisms in Li-CO 2 /O 2 and Li-CO 2 electrochemical systems. Meanwhile, affecting factors on the reaction pathways and the identification of discharge products are summarized and discussed. Then, Li anode/electrolyte interface construction, electrolyte properties and selection of cathode materials/catalysts and design strategy, especially their effect on the performance of Li-CO 2 /O 2 and Li-CO 2 batteries, are explored and possible solutions and suggestions are provided. Building on an in-depth understanding of Li-CO 2 electrochemistry, novel flexible Li-CO 2 batteries and key factors are summarized. Furthermore, based on advanced research progress in the past several years, we identify the main problems, controversies, and challenges currently existing in various battery components that remain to be addressed to design more practicable Li-CO 2 /O 2 and Li-CO 2 batteries. Finally, future research directions and opportunities are presented. This review presents a comprehensive understanding of recent advances in Li-CO 2 electrochemistry and aims to develop advanced Li-CO 2 batteries.
ISSN:1754-5692
1754-5706
DOI:10.1039/c8ee03417f