Abstract
Nickel (II) complexes bearing tetradentate NCCN ligands comprised of optionally protic pyridine and N-heterocyclic carbene (NHC) donors have been synthesized and used as catalysts for carbon dioxide reduction. These complexes were synthesized bearing OMe, OBn, or OH substituents on the pyridine rings and were characterized by 1H NMR, 13C NMR, UV-Vis, IR, HR-MS, and single crystal X-ray diffraction. The OH substituent was partially deprotonated as shown by the crystal structure. Electrochemical studies show that these nickel complexes undergo two electron reduction events prior to CO2 reduction. Catalytic current enhancement under CO2 relative to N2 is not observed under dry conditions, but the addition of proton sources leads to modest current enhancement (icat/ip < 2). Visible light driven photochemical CO2 reduction with a photosensitizer (Ir(ppy)3 where ppy = 2-phenylpyridine) and sacrificial electron and proton donors was studied, and formate is the major product with ~10:1 formate to CO production. Electron donor groups (OMe, OBn, OH) do not enhance formate production (relative to H analog), and CO production is only slightly enhanced. Overall with Ni(II), the tetradentate ligands are comparable to recently published pincer ligands for sensitized CO2 reduction, but pincer ligands offer a clear advantage in self-sensitized catalysis.
Supplementary materials
Title
combined CIF
Description
CIF file -crystallographic data
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geometries XYZ
Description
computational structure geometries
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Title
SI PDF
Description
experimental procedures
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