材料科学
阳极
碳纤维
兴奋剂
钠
离子
生物量(生态学)
化学工程
电极
复合材料
光电子学
冶金
复合数
有机化学
物理化学
地质学
工程类
海洋学
化学
作者
Jian Cui,Wenxiu Li,Panpan Su,Xuefen Song,Wendong Ye,Yong-Guang Zhang,Zhongwei Chen
标识
DOI:10.1002/aenm.202502082
摘要
Abstract Biomass‐derived hard carbon (HC), a promising anode material for sodium‐ion batteries with low cost and good cycling ability, has high surface activity that easily reacts with the electrolyte, causing low initial coulombic efficiency (ICE) and poor stability. This article proposes a facile synthesis of pine wood‐derived HC material with N‐doped soft carbon (SC) coating strategy to improve electrochemical performance, especially for the ICE. The optimized anode material exhibits higher reversible capacity of 314.0 mAh g −1 at 30 mA·g −1 with greatly enhanced ICE of 85.2%, and high rate performance of 260.0 mAh g −1 at 5.0 C. Combined with in situ/ex situ characterizations, SC coating greatly increased closed pores that is beneficial for improving sodium storage and the anode material is explored as a adsorption‐filling sodium storage behavior, favoring the high‐rate performance. Density functional theory (DFT) calculations further revealed that nitrogen doping in SC greatly enhanced the sodium adsorption kinetics and provides more adsorption sites for Na + storage, increasing sodium storage capacity. This work provides in‐depth insights into the surface modification of hard carbon, and offers new opportunities for the design of efficient HC anodes.
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