Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session F47: Energy Storage: Li Ion Batteries
11:15 AM–2:15 PM,
Tuesday, March 5, 2019
BCEC
Room: 213
Sponsoring
Unit:
GERA
Chair: Sarbajit Banerjee, Texas A&M Univ
Abstract: F47.00011 : Lithium Interaction with Graphene Materials at Finite Temperature
1:15 PM–1:27 PM
Presenter:
Yusuf Shaidu
(Condensed Matter Physics, International School for Advanced Studies)
Authors:
Yusuf Shaidu
(Condensed Matter Physics, International School for Advanced Studies)
Emine Kucukbenli
(Condensed Matter Physics, International School for Advanced Studies)
Stefano de Gironcoli
(Condensed Matter Physics, International School for Advanced Studies)
Experimentally obtained graphene based structures have been suggested to replace the state-of-the-art graphitic anode [1]
We characterized the Li adsorption on graphene both at zero and finite temperatures. The zero temperature study was carried out by means of density functional theory (DFT) accounting for van der Waals interactions while the finite temperature behavior was studied by Monte Carlo techniques with DFT-derived Li-graphene interaction potential constructed via cluster expansion method. At zero temperature, the dispersed Li configurations are unstable with respect to metallic Li. At higher temperatures, entropic effects stabilize lower concentrations with respect to bulk Li while below 400\,K, the formation of 2D Li-clusters is stable over a random distribution of Li. In order to understand the nature of Li interactions with all carbon materials rather than single layer graphene, we are developing an artificial-neural-network based lithium-carbon interaction potential employing Behler and Parrinello symmetry functions[2] as structural descriptors. This will allow a detailed investigation and characterization of Li interaction with these materials.
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