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Role of Li2O2@Li2CO3 Interfaces on Charge Transport in Nonaqueous Li−Air Batteries

Authors :
Juan María García-Lastra
Jens S. Hummelshøj
Yedilfana Setarge Mekonnen
Chengjun Jin
Tejs Vegge
Source :
Mekonnen, Y S, García Lastra, J M, Hummelshøj, J S, Jin, C & Vegge, T 2015, ' Role of Li 2 O 2 @Li 2 CO 3 Interfaces on Charge Transport in Nonaqueous Li−Air Batteries ', The Journal of Physical Chemistry Part C, vol. 119, no. 32, pp. 18066–18073 . https://doi.org/10.1021/acs.jpcc.5b04432
Publication Year :
2015

Abstract

The formation and oxidation of the main discharge product in nonaqueous secondary Li−O2 batteries, that is, Li2O2, has been studied intensively, but less attention has been given to the formation of cathode−electrolyte interfaces, which can significantly influence the performance of the Li−O2 battery. Here we apply density functional theory with the Hubbard U correction (DFT+U) and nonequilibrium Green’s function (NEGF) methods to investigate the role of Li2O2@Li2CO3 interface layers on the ionic and electronic transport properties at the oxygen electrode. We show that, for example, lithium vacancies accumulate at the peroxide part of the interface during charge, reducing the coherent electron transport by two to three orders of magnitude compared with pristine Li2O2. During discharge, Li2O2@Li2CO3 interfaces may, however, provide an alternative in-plane channel for fast electron polaron hopping that could improve the electronic conductivity and ultimately increase the practical capacity in nonaqueous Li−O2 batteries.

Details

Language :
English
Database :
OpenAIRE
Journal :
Mekonnen, Y S, García Lastra, J M, Hummelshøj, J S, Jin, C & Vegge, T 2015, ' Role of Li 2 O 2 @Li 2 CO 3 Interfaces on Charge Transport in Nonaqueous Li−Air Batteries ', The Journal of Physical Chemistry Part C, vol. 119, no. 32, pp. 18066–18073 . https://doi.org/10.1021/acs.jpcc.5b04432
Accession number :
edsair.doi.dedup.....282f20d2ab62e8e9b83bc75cf9c4f729
Full Text :
https://doi.org/10.1021/acs.jpcc.5b04432