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      New highly soluble triarylamine-based materials as promising catholytes for redox flow batteries

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          Abstract

          Arylamines bearing oligoethylene glycol ether solubilizing moieties were designed as promising highly soluble catholyte materials for non-aqueous redox flow batteries.

          Abstract

          A series of arylamines bearing oligoethylene glycol ether solubilizing moieties were designed and comprehensively evaluated as promising catholyte materials for non-aqueous redox flow batteries (RFBs). The triphenylamine core maintains the chemical stability of the radical cation, the ethylene glycol chains enhance the solubility up to complete miscibility with organic solvents, and the electron-withdrawing bromine substituents increase the redox potential of the compounds up to 0.61 V vs. Ag/AgNO 3. The best material showed 99% coulombic efficiency in combination with good stability in over 50 charge–discharge cycles in laboratory RFB cells. The designed triarylamine-based catholyte materials appear promising for the development of next-generation high-voltage and high-capacity RFBs.

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          Contributors
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          Journal
          JMCAET
          Journal of Materials Chemistry A
          J. Mater. Chem. A
          Royal Society of Chemistry (RSC)
          2050-7488
          2050-7496
          April 6 2021
          2021
          : 9
          : 13
          : 8303-8307
          Affiliations
          [1 ]Center for Energy Science and Technology
          [2 ]Skolkovo Institute of Science and Technology
          [3 ]Moscow
          [4 ]Russian Federation
          [5 ]Institute of Problems of Chemical Physics
          [6 ]Russian Academy of Sciences
          [7 ]Moscow Region
          Article
          10.1039/D0TA11860E
          aad1c71a-2c61-44d0-9b4f-ec01b8e257f3
          © 2021

          http://rsc.li/journals-terms-of-use

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