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Electrocatalytic reduction of protons to dihydrogen by the cobalt tetraazamacrocyclic complex [Co(N<sub>4</sub>H)Cl<sub>2</sub>]<sup>+</sup>: mechanism and benchmarking of performances

20

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46

References

2021

Year

Abstract

The cobalt tetraazamacrocyclic [Co(N<sub>4</sub>H)Cl<sub>2</sub>]<sup>+</sup> complex is becoming a popular and versatile catalyst for the electrocatalytic evolution of hydrogen, because of its stability and superior activity in aqueous conditions. We present here a benchmarking of its performances based on the thorough analysis of cyclic voltammograms recorded under various catalytic regimes in non-aqueous conditions allowing control of the proton concentration. This allowed a detailed mechanism to be proposed with quantitative determination of the rate-constants for the various protonation steps, as well as identification of the amine function of the tetraazamacrocyclic ligand to act as a proton relay during H<sub>2</sub> evolution.

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