Ruthenium Assemblies for CO 2 Reduction and H 2 Generation: Time Resolved Infrared Spectroscopy, Spectroelectrochemistry and a Photocatalysis Study in Solution and on NiO.

Frontiers in chemistry(2021)

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摘要
Two novel supramolecular complexes ([Ru(dceb)(bpt)Re(CO)Cl](PF)) and ([Ru(dceb)(bpt)PtI(HO)](PF)) [dceb = diethyl(2,2'-bipyridine)-4,4'-dicarboxylate, bpt = 3,5-di(pyridine-2-yl)-1,2,4-triazolate] were synthesized as new catalysts for photocatalytic CO reduction and H evolution, respectively. The influence of the catalytic metal for successful catalysis in solution and on a NiO semiconductor was examined. IR-active handles in the form of carbonyl groups on the peripheral ligand on the photosensitiser were used to study the excited states populated, as well as the one-electron reduced intermediate species using infrared and UV-Vis spectroelectrochemistry, and time resolved infrared spectroscopy. Inclusion of ethyl-ester moieties led to a reduction in the LUMO energies on the peripheral bipyridine ligand, resulting in localization of the MLCT excited state on these peripheral ligands following excitation. generated hydrogen in solution and when immobilized on NiO in a photoelectrochemical (PEC) cell. was inactive as a CO reduction catalyst in solution, and produced only trace amounts of CO when the photocatalyst was immobilized on NiO in a PEC cell saturated with CO.
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关键词
CO2,hydrogen,photocatalysis,ruthenium assemblies,spectroelectrochemistry,time resolved spectroscopy
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