氧化还原
电池(电)
电极
催化作用
材料科学
钥匙(锁)
化学工程
化学
无机化学
计算机科学
工程类
有机化学
功率(物理)
物理
物理化学
量子力学
计算机安全
作者
Zhengcai Zhang,Dulin Huang,Xiaohui Peng,Zhang Zhang,Yaying Dou,Zhen Zhou
出处
期刊:Energy & environmental materials
[Wiley]
日期:2025-07-30
摘要
Redox mediators (RMs) represent the most promising strategy to address the sluggish kinetics of lithium–oxygen (Li–O 2 ) batteries. To achieve high‐energy and cost‐effective Li–O 2 batteries, carbon materials are typically regarded as ideal cathodes in these systems. However, the impact of their surface properties—which often regulate specific discharge pathways—on the RM‐mediated oxygen reduction reaction (ORR) remains unclear. In this study, CNTs electrodes with different surface properties are fabricated. Results suggest that CNTs with more surface defects not only promote the unmediated discharge pathway even in RMs‐involved battery systems but also exacerbate the corrosion of carbon cathodes. This, in turn, leads to the undesired accumulation of Li 2 O 2 and Li 2 CO 3 on the cathode surface, which hinders effective and continuous electron transfer between the cathode and RMs, ultimately decreasing the catalytic activity of RMs. As a result, the discharge capacity of the battery is seriously diminished, especially at large current densities. These findings underscore the significance of surface engineering in advancing the performance of RMs‐assisted Li–O 2 batteries.
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