Tuning S Doping in Porous Carbon for Enhanced Initial Coulombic Efficiency and Rate Performance for Sodium/Potassium‐Ion Batteries

法拉第效率 阳极 材料科学 化学工程 无定形固体 复合数 碳化 电解质 电流密度 碳纤维 杂原子 多孔性 无定形碳 兴奋剂 纳米技术 煅烧 电池(电) 锂(药物) 复合材料 极化(电化学)
作者
Jiahao Zhao,Lankun Shi,Mengting Jia,Yu Gao,Zhongmin Lang,Boyu Sun,Jinlong Cui,Shaohui Li
出处
期刊:Energy & environmental materials [Wiley]
卷期号:9 (5) 被引量:7
标识
DOI:10.1002/eem2.70294
摘要

Amorphous carbon has emerged as a promising anode material for sodium‐ion (SIBs) and potassium‐ion batteries (PIBs) due to its high specific capacity, abundant defects, and low production cost. Nevertheless, its practical application remains hindered by suboptimal rate performance and low initial Coulombic efficiency (ICE). Heteroatom doping, particularly with sulfur (S), has proven to be an effective strategy for addressing these limitations. In this study, S was successfully incorporated in a controlled amount into the amorphous porous C framework via a combination of low‐temperature carbonization and a facile fumigation process. The introduction of S and the low‐temperature treatment synergistically induced a higher density of structural defects, which contributed to significantly enhanced rate performance of the sulfur–carbon (S/C) composite. Furthermore, controlled S doping facilitated the formation of a thinner and more stable solid electrolyte interphase (SEI) during the initial cycling, thereby minimizing irreversible sodium consumption and leading to a substantial improvement in ICE. As an anode for SIBs, the optimized S/C composite delivers a high reversible capacity of 480 mAh g −1 at 0.1 A g −1 and maintains a capacity of 232.6 mAh g −1 even at 5.0 A g −1 . Notably, an ICE of 83.1% is achieved under a current density of 0.1 A g −1 . When applied as the anode for PIBs, the composite exhibits a reversible capacity of 439.2 mAh g −1 and an ICE of 61.2% at the same current density. This work provides a viable and scalable approach to simultaneously enhance the rate performance and ICE of amorphous C.
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