石墨烯
氧化物
化学物理
材料科学
扩散
分子动力学
离子
从头算
离子键合
阳极
异质结
插层(化学)
电化学
密度泛函理论
纳米技术
化学
化学工程
电极
无机化学
计算化学
物理化学
热力学
光电子学
工程类
物理
有机化学
冶金
作者
Xiangcui Qiu,Yihao Zheng,Haibo Li,Konggang Qu,Rui Li
出处
期刊:Langmuir
[American Chemical Society]
日期:2024-06-11
卷期号:40 (25): 13155-13166
被引量:1
标识
DOI:10.1021/acs.langmuir.4c01137
摘要
The development of heterostructured anode materials provides an effective approach for enhancing the electrochemical performance of sodium-ion batteries (SIBs). In this work, ab initio molecular dynamics simulations and first-principles calculations are employed to investigate the Na-ion intercalation and diffusion in MXene/graphene oxide heterostructures. The influence of graphene oxidation on interlayer spacing, Na-ion diffusion kinetics, and transport mechanisms is examined at an atomic scale. It has been observed that oxygen functional groups can increase the interspacing between adjacent layers, thereby improving the initial embedding of Na ions. However, overoxidation causes an obstructive effect on the ionic conduction channels. An appropriate oxidation degree enables optimal Na-ion migration kinetics while retaining structural integrity. Our simulation results provide crucial insights into the rational design of high-performance MXene-based anodes for SIBs with excellent capacity and cycling stability.
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