Lithium adsorption properties of monolayer B$_5$Se
Amretashis Sengupta

TL;DR
This study uses first-principles calculations to explore monolayer B5Se as a high-capacity anode material for lithium-ion batteries, showing promising electrochemical properties and diffusion characteristics.
Contribution
It is the first to evaluate the lithium adsorption properties and capacity of monolayer B5Se using DFT, revealing its potential as a superior battery anode material.
Findings
Maximum theoretical capacity of 1486.87 mAhg$^{-1}$ for Li adsorption.
Open circuit potential range of 0.291-0.179V.
Li diffusion barrier of 0.15 eV.
Abstract
BSe this work we investigate the Li adsorption properties of a hybrid 2D material, namely monolayer B5Se with first principles calculations. 2 dimensional BSe was found to have a distorted hexagonal structure with five B atoms and one Se atom at the vertices of each hexagon. The density functional theory (DFT) calculations are performed with the generalized gradient approximation (GGA) and Perdew-Burke-Ernzerhoff (PBE) exchange correlation functional. The results were inclusive of van der Waals corrections with Grimmes DFT-D2 scheme. Electrode performance metrics, as the most preferred adsorption sites and adsorption energies, open circuit anode potentials, charge density differences and specific capacities for varying adatom coverage were evaluated with the DFT calculations. The adatom diffusion barriers were evaluated with a nudged elastic band (NEB) method. The ab-initio…
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Taxonomy
TopicsAdvancements in Battery Materials · Boron and Carbon Nanomaterials Research · Graphene research and applications
