articleTop 1% cited
Molecular systems for light driven hydrogen production
Dalton Transactions · 2012 · Vol. 41(42) · pp. 13004–13004
William T. Eckenhoff(University of Rochester)Richard Eisenberg✉(University of Rochester)
Abstract
Recent work towards the production of hydrogen via reduction of protons is described. Most of the systems examined in this perspective use a molecular chromophore for harvesting visible light, a catalyst, which is reduced by the excited (or reduced) chromophore, and finally a sacrificial electron source to oxidatively or reductively quench the chromophore. The reduced catalyst is then responsible for the reduction of protons resulting in hydrogen evolution. Relevant mechanistic work on this topic is also discussed.
Metalloenzymes and iron-sulfur proteinsElectrocatalysts for Energy ConversionCO2 Reduction Techniques and CatalystsChromophorePhotochemistryExcited stateHydrogenHydrogen productionCatalysisReduction (mathematics)ChemistryWork (physics)Materials science
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