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In situ electrosynthesis of anthraquinone electrolytes in aqueous flow batteries†
Yan Jing,Min Wu,Andrew A. Wong,Eric M. Fell,Shijian Jin,Daniel A. Pollack,Emily F. Kerr,Michael J. Aziz
Green Chemistry Pub Date : 09/02/2020 00:00:00 , DOI:10.1039/D0GC02236E
Abstract

We demonstrate the electrochemical oxidation of an anthracene derivative to a redox-active anthraquinone at room temperature in a flow cell without the use of hazardous oxidants or noble metal catalysts. The anthraquinone, generated in situ, was used as the active species in a flow battery electrolyte without further modification or purification. This potentially scalable, safe, green, and economical electrosynthetic method is also applied to another anthracene-based derivative and may be extended to other redox-active aromatics.

Graphical abstract: In situ electrosynthesis of anthraquinone electrolytes in aqueous flow batteries
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