High-capacity V2N MXene for multivalent ion batteries: an Ab initio study

TitleHigh-capacity V2N MXene for multivalent ion batteries: an Ab initio study
Publication TypeJournal Article
Year of Publication2024
AuthorsSaharan, S, Ghanekar, U, Shivankar, BR, Meena, S
JournalJournal of Physical Chemistry C
Volume128
Issue31
Pagination12840-12848
Date PublishedJUL
Type of ArticleArticle
ISSN1932-7447
Abstract

In this study, the electrochemical energy storage properties of V2N MXene as an electrode material for multivalent zinc (Zn2+) and calcium (Ca2+) ion rechargeable batteries have been studied using first-principles computations. Various properties like band structure, adsorption energy, diffusion kinetics, and open-circuit voltage are investigated using density functional theory. V2N MXene demonstrates metallic properties with a high structural stability and low diffusion barriers. Remarkably, Zn (976.4 mA h/g) and Ca (770.8 mA h/g)-adsorbed V2N MXene layers exhibit better storage capacity than the reported ones (517 mA h/g for zinc-intercalated CC@MnO2@Ti3C2TX and 598.63 mA h/g for calcium-intercalated V3C2/graphene). These findings make V2N MXene a highly promising cathode material for zinc and an anode material for calcium-ion batteries.

DOI10.1021/acs.jpcc.4c03063
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

3.7

Divison category: 
Physical and Materials Chemistry
Database: 
Web of Science (WoS)

Add new comment