FIRST‐PRINCIPLES STUDY OF CARBON‐SUBSTITUTED ZnO MONOLAYER FOR ADJUSTING LITHIUM ADSORPTION IN BATTERY APPLICATION

单层 吸附 锂(药物) 电池(电) 材料科学 碳纤维 化学工程 无机化学 化学 复合材料 纳米技术 物理化学 工程类 热力学 复合数 心理学 物理 功率(物理) 精神科
作者
Riri Jonuarti,Siti Zulaehah,Joko Suwardy,Resti Marlina,Suprijadi Suprijadi,Robi Kurniawan,Yudi Darma
出处
期刊:ChemNanoMat [Wiley]
标识
DOI:10.1002/cnma.202300547
摘要

Structural stability, local density of states, bonding information, and charge distribution differences of C‐substituted ZnO (C/VZnxOy) monolayer structures, as well as their interactions with lithium atoms, are investigated using the density functional theory (DFT) method. The energy required to generate vacancies in pristine ZnO monolayers is considerably high, but since the C atoms are strongly adsorbed in thevacant sites, the energy required to form C/VZnxOy structures is reduced. These lattice substitutions cause an alteration of the Zn d‐states. The bonding analysis shows that the C — O interaction is stronger than the C — Zn interaction. So, it generates high stability for these structures. Furthermore, because the development of C/VZnxOy is aimed at lithium battery electrode applications, the most fundamental thing that needs to be examined initially is the interaction between the C/VZnxOy surfaces and the lithium atoms. Li3 strongly binds on all C/VZnxOy surfaces, and it turns to Li3+ based on a simple analysis of charge distribution differences. These findings will have a substantial impact on the future development of ZnO monolayers, and their potential as lithium battery electrodes can be studied further.

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