Electrochemical proton-coupled electron transfer of an anthracene-based azo dye

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Abstract

Herein, we report the thermodynamics, kinetics, and mechanism for electrochemical proton-coupled electron transfer involving the anthracene-based azo dye azo-OMe. The peak reduction potential of azo-OMe with organic acids spanning the pKa range of 2.6-23.51 shows a dependence upon the pKa of the acid when the acid pKa falls between 8 and 20 (in acetonitrile). A potential-pKa diagram is constructed and used to estimate the pKa of the azo-OMe species. Heterogeneous electron-transfer rate constants are obtained using rotating disk electrode voltammetry in combination with Koutecký-Levich and Tafel analysis. Electrochemical analysis shows that the reactions are diffusion limited and are kinetically controlled by the electron-transfer step. Kinetic isotope studies indicate a concerted proton, electron transfer event occurs in the pKa-dependent range when using trifluoroacetic acid.

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Oldacre, A. N., & Young, E. R. (2020). Electrochemical proton-coupled electron transfer of an anthracene-based azo dye. RSC Advances, 10(25), 14804–14811. https://doi.org/10.1039/d0ra01643h

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