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Promoting solution phase discharge in Li-O-2 batteries containing weakly solvating electrolyte solutions

Gao, Xiangwen; Johnson, Lee; Chen, Yuhui; Bruce, Peter G.

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Authors

Xiangwen Gao

LEE JOHNSON LEE.JOHNSON@NOTTINGHAM.AC.UK
Professor of Electrochemistry

Yuhui Chen

Peter G. Bruce



Abstract

On discharge, the Li–O2 battery can form a Li2O2 film on the cathode surface, leading to low capacities, low rates and early cell death, or it can form Li2O2 particles in solution, leading to high capacities at relatively high rates and avoiding early cell death. Achieving discharge in solution is important and may be encouraged by the use of high donor or acceptor number solvents or salts that dissolve the LiO2 intermediate involved in the formation of Li2O2. However, the characteristics that make high donor or acceptor number solvents good (for example, high polarity) result in them being unstable towards LiO2 or Li2O2. Here we demonstrate that introduction of the additive 2,5-di-tert-butyl-1,4-benzoquinone (DBBQ) promotes solution phase formation of Li2O2 in low-polarity and weakly solvating electrolyte solutions. Importantly, it does so while simultaneously suppressing direct reduction to Li2O2 on the cathode surface, which would otherwise lead to Li2O2 film growth and premature cell death. It also halves the overpotential during discharge, increases the capacity 80- to 100-fold and enables rates >1 mA cmareal−2 for cathodes with capacities of >4 mAh cmareal−2. The DBBQ additive operates by a new mechanism that avoids the reactive LiO2 intermediate in solution.

Journal Article Type Article
Acceptance Date Mar 21, 2016
Publication Date Apr 25, 2016
Deposit Date Feb 26, 2018
Publicly Available Date Jan 9, 2019
Print ISSN 1476-1122
Electronic ISSN 1476-4660
Publisher Nature Publishing Group
Peer Reviewed Peer Reviewed
Volume 15
Issue 8
Pages 882-888
DOI https://doi.org/10.1038/NMAT4629
Public URL https://nottingham-repository.worktribe.com/output/1127212
Publisher URL https://www.nature.com/articles/nmat4629
PMID 00038084

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