Characterization of paramagnetic states in an organometallic nickel hydrogen evolution electrocatalyst.

Chakrabarti, Sagnik; Sinha, Soumalya; Tran, Giang N; Na, Hanah; Mirica, Liviu M · Nat Commun · 2023

basic_science · Level V

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Abstract

Significant progress has been made in the bioinorganic modeling of the paramagnetic states believed to be involved in the hydrogen redox chemistry catalyzed by [NiFe] hydrogenase. However, the characterization and isolation of intermediates involved in mononuclear Ni electrocatalysts which are reported to operate through a Ni<sup>I/III</sup> cycle have largely remained elusive. Herein, we report a Ni<sup>II</sup> complex (NCHS2)Ni(OTf)2, where NCHS2 is 3,7-dithia-1(2,6)-pyridina-5(1,3)-benzenacyclooctaphane, that is an efficient electrocatalyst for the hydrogen evolution reaction (HER) with turnover frequencies of ~3,000 s<sup>-1</sup> and a overpotential of 670 mV in the presence of trifluoroacetic acid. This electrocatalyst follows a hitherto unobserved HER mechanism involving C-H activation, which manifests as an inverse kinetic isotope effect for the overall hydrogen evolution reaction, and Ni<sup>I</sup>/Ni<sup>III</sup> intermediates, which have been characterized by EPR spectroscopy. We further validate the possibility of the involvement of Ni<sup>III</sup> intermediates by the independent synthesis and characterization of organometallic Ni<sup>III</sup> complexes.