Photoassisted electrolysis of water - Conversion of optical to chemical energy
Mark S. Wrighton, Jeffrey M. Bolts, Steven W. Kaiser, Arthur B. Ellis
Abstract
Mark S. Wrighton, Jeffrey M. Bolts, Steven W. Kaiser, Arthur B. Ellis
Abstract
A description is given of devices, termed photoelectrochemical cells, which can, in principle, be used to directly convert light to fuels and/or electricity. The fundamental principles on which the photoelectrochemical cell is based are related to the observation that irradiation of a semiconductor electrode in an electrochemical cell can result in the flow of an electric current in the external circuit. Attention is given to the basic mechanisms involved, the energy conversion efficiency, the advantages of photoelectrochemical cells, and the results of investigations related to the study of energy conversion via photoelectrochemical cells.
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A description is given of devices, termed photoelectrochemical cells, which can, in principle, be used to directly convert light to fuels and/or electricity. The fundamental principles on which the photoelectrochemical cell is based are related to the observation that irradiation of a semiconductor electrode in an electrochemical cell can result in the flow of an electric current in the external circuit. Attention is given to the basic mechanisms involved, the energy conversion efficiency, the advantages of photoelectrochemical cells, and the results of investigations related to the study of energy conversion via photoelectrochemical cells.
Key concepts: Photoelectrochemical cell, Chemical energy, Electrolysis, Energy transformation, Electrochemical energy conversion, Energy conversion efficiency, Electrochemical cell, Semiconductor