材料科学
催化作用
阴极
金属有机骨架
无机化学
金属
化学工程
纳米技术
有机化学
冶金
物理化学
吸附
化学
工程类
作者
Zhibin Cheng,Lin Dong,Yunbin Li,Haibo Yan,Jindan Zhang,Shengchang Xiang,Zhangjing Zhang
标识
DOI:10.1002/adfm.202504330
摘要
Abstract Lithium‐carbon dioxide (Li‐CO₂) batteries have attracted significant attention as a potential solution to mitigate the greenhouse effect and meet the demand for high energy density storage systems. Designing efficient cathodic catalysts is crucial for the development of high‐performance Li‐CO₂ batteries. Herein, an innovative Lewis acidity‐enhancement strategy is proposed for the design of cathodic catalysts in Li‐CO 2 batteries. These results demonstrate that a metal‐organic framework (MOF) with stronger Lewis acidity exhibits a significantly lower overpotential of 1.27 V, compared to 1.58 V for the MOF with weaker Lewis acidity. The enhanced Lewis acidity of Mn3‐MOF accelerates both the CO 2 reduction reaction and lithium carbonate decomposition, leading to improved electrochemical performance, including better rate capability and cycling stability. This study emphasizes the critical role of Lewis acidity in the design of efficient catalysts and provides valuable insights for the development of high‐performance Li‐CO 2 batteries.
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