Review-A Comparative Evaluation of Redox Mediators for Li-O-2 Batteries: A Critical Review

Authors
Kwak, Won-JinKim, HunJung, Hun-GiAurbach, DoronSun, Yang-Kook
Issue Date
2018-07
Publisher
ELECTROCHEMICAL SOC INC
Citation
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.165, no.10, pp.A2274 - A2293
Abstract
For resolving the low-energy efficiency issue of Li-O-2 batteries, many kinds of redox mediators (RMs) have been adapted. However, studies looking into the problems of RMs in these systems are insufficient. We compare herein effects and problems of RMs in Li-O-2 batteries by applying unique methodology, based on two types of cells, comparison between argon and oxygen atmospheres and combining electrochemistry in conjunction with spectroscopy. Using systematic electrochemical measurements, representative RMs in Li-O-2 battery prototypes were thoroughly explored with respect to oxygen presence, voltage ranges and scan rates. By this comparative, multi-parameters study we reached valuable insights. We identified possible routes for RMs degradation in Li-O-2 batteries related to the cathode side, using bi-compartments cells with solid electrolyte that blocks the crossover between the cathode and the Li metal sides. Based on comparative electrochemical and spectroscopic analyses, we confirmed that degradation of the RMs activity was caused by intrinsic decomposition of the RMs in the electrolyte solution at the cathode part, even before further reactions with reduced oxygen species. This work provides a realistic view of the role of important RMs in Li-oxygen cells and suggests guidelines for effective screening and selecting suitable RMs, mandatory components in Li-O-2 batteries. (C) The Author(s) 2018. Published by ECS.
Keywords
LITHIUM-OXYGEN BATTERIES; LI-AIR BATTERIES; SUPPRESSING CHARGING INSTABILITIES; EVOLUTION REACTIONS; LI2O2 OXIDATION; CARBON; ELECTROLYTE; STABILITY; REDUCTION; CATALYST; LITHIUM-OXYGEN BATTERIES; LI-AIR BATTERIES; SUPPRESSING CHARGING INSTABILITIES; EVOLUTION REACTIONS; LI2O2 OXIDATION; CARBON; ELECTROLYTE; STABILITY; REDUCTION; CATALYST
ISSN
0013-4651
URI
https://pubs.kist.re.kr/handle/201004/121224
DOI
10.1149/2.0901810jes
Appears in Collections:
KIST Article > 2018
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