Triarylamines as Catholytes in Aqueous Organic Redox Flow Batteries

Author:

Farag Nadia L.1ORCID,Jethwa Rajesh B.2ORCID,Beardmore Alice E.1ORCID,Insinna Teresa1ORCID,O'Keefe Christopher A.1ORCID,Klusener Peter A. A.3ORCID,Grey Clare P.1ORCID,Wright Dominic S.1ORCID

Affiliation:

1. Department of Chemistry Yusuf Hamied Department of Chemistry University of Cambridge Lensfield Rd Cambridge CB2 1EW United Kingdom

2. Institute of Science and Technology Am Campus 1 Klosterneuberg 3400 Austria

3. Shell Global Solutions International B.V. Energy Transition Campus Amsterdam Grasweg 31 1031 HW Amsterdam The Netherlands

Abstract

AbstractA series of triarylamines was synthesised and screened for their suitability as catholytes in redox flow batteries using cyclic voltammetry (CV). Tris(4‐aminophenyl)amine was found to be the strongest candidate. Solubility and initial electrochemical performance were promising; however, polymerisation was observed during electrochemical cycling leading to rapid capacity fade prescribed to a loss of accessible active material and the limitation of ion transport processes within the cell. A mixed electrolyte system of H3PO4 and HCl was found to inhibit polymerisation producing oligomers that consumed less active material reducing rates of degradation in the redox flow battery. Under these conditions Coulombic efficiency improved by over 4 %, the maximum number of cycles more than quadrupled and an additional theoretical capacity of 20 % was accessed. This paper is, to our knowledge, the first example of triarylamines as catholytes in all‐aqueous redox flow batteries and emphasises the impact supporting electrolytes can have on electrochemical performance.

Funder

Shell United States

European Research Council

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

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