Simple Air‐Stable (3) Radialene Anion Radicals as Environmentally Switchable Catholytes in Water

Abstract: The hexacyano[3]radialene radical anion (1) is an attractive catholyte material for use in redox flow battery (RFB) applications. The substitution of cyano groups with ester moieties enhances solubility while maintaining redox reversibility and favorable redox potentials. Here we show that these ester‐functionalized, hexasubstituted [3]radialene radical anions dimerize reversibly in water. The dimerization mode is dependent on the substitution pattern and can be switched in solution. Stimuli‐responsive behavior is achieved by exploiting an unprecedented tristate switching mechanism, wherein the radical can be toggled between the free radical, a π‐dimer, and a σ‐dimer‐each with dramatically different optical, magnetic, and redox properties‐by changing the solvent environment, temperature, or salinity. The symmetric, triester‐tricyano[3]radialene (3) forms a solvent‐responsive, σ‐dimer in water that converts to the radical anion with the addition of organic solvents or to a π‐dimer in brine solutions. Diester‐tetracyano[3]radialene (2) exists primarily as a π‐dimer in aqueous solutions and a radical anion in organic solvents. The dimerization behavior of both 2 and 3 is temperature dependent in methanol solutions. Dimerization equilibrium has a direct impact on catholyte stability during galvanostatic charge–discharge cycling in static H‐cells. Specifically, conditions that favor the free radical anion or π‐dimer exhibit significantly enhanced cycling profiles.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Simple Air‐Stable (3) Radialene Anion Radicals as Environmentally Switchable Catholytes in Water ; day:07 ; month:12 ; year:2023 ; extent:8
Chemistry - a European journal ; (07.12.2023) (gesamt 8)

Creator
Hasan, Fuead
Gillen, Jonathan H.
Jayaweera, Amaya T.
McDearmon, William D.
Winter, Arthur H.
Bejger, Christopher M.

DOI
10.1002/chem.202302829
URN
urn:nbn:de:101:1-2023120815131463870176
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
15.08.2025, 7:21 AM CEST

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Associated

  • Hasan, Fuead
  • Gillen, Jonathan H.
  • Jayaweera, Amaya T.
  • McDearmon, William D.
  • Winter, Arthur H.
  • Bejger, Christopher M.

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