Reactivity and mechanism of photo-and electrocatalytic hydrogen evolution by a diimine copper(I) complex

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Abstract

The tetrahedral copper(I) diimine complex [Cu(pq)2]BF4 displays high photocatalytic activity for the H2 evolution reaction with a turnover number of 3564, thus representing the first type of a Cu(I) quinoxaline complex capable of catalyzing proton reduction. Electrochemical experiments indicate that molecular mechanisms prevail and DFT calculations provide in-depth insight into the catalytic pathway, suggesting that the coordinating nitrogens play crucial roles in proton exchange and hydrogen formation.

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Drosou, M., Kamatsos, F., Ioannidis, G., Zarkadoulas, A., Mitsopoulou, C. A., Papatriantafyllopoulou, C., & Tzeli, D. (2020). Reactivity and mechanism of photo-and electrocatalytic hydrogen evolution by a diimine copper(I) complex. Catalysts, 10(11), 1–13. https://doi.org/10.3390/catal10111302

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