Correcting charge distribution in reduced Li‐molecule pair for computational screening of battery solvents

Author:

Orekhov M. A.12ORCID

Affiliation:

1. Moscow Institute of Physics and Technology (State University) Dolgoprudny Russia

2. Joint Institute for High Temperatures of the Russian Academy of Sciences (JIHT RAS) Moscow Russia

Abstract

AbstractLi‐molecule pair is a widely used model for the simulation of reduction in Li‐ion batteries. We demonstrate that this model provides incorrect results for some solvents. When an electron is added to the Li‐molecule pair, it may go to the lithium‐ion and neutralize it. Instead, we suggest placing this additional electron on the molecule using constrained density functional theory (CDFT). This approach resembles electron behaviour in the condensed phase and reproduces the physics of the reduction. We demonstrate that suggested in this work approach provides improved agreement with experimental data. Suggested CDFT‐based method is fast, reliable and may be used in computational screening of solvents. We demonstrate the practical application of the method by benchmarking it on a set of 30 molecules from the electrolyte solvent database.

Funder

Russian Science Foundation

Publisher

Wiley

Subject

Computational Mathematics,General Chemistry

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