Results 121 to 130 of about 1,181 (180)
Near-unity charge transfer efficiency on bare semiconductor photoanodes induced by polyols and ammonia co-oxidation. [PDF]
Li Q +6 more
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Constructing Palladium-Based Crystalline@Amorphous Core-Shell Heterojunctions for Efficient Formic Acid Oxidation. [PDF]
Li H +8 more
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Operando double-edge high-resolution X-ray absorption spectroscopy study of BiVO4 photoanodes. [PDF]
Piccioni A +7 more
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Electrochemical Biosensors Driving Model Transformation for Food Testing. [PDF]
Wu X +7 more
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Organo-catalyzed photoelectrochemical ring-contraction of arylidenecyclobutanols via radical cation-triggered semipinacol rearrangement. [PDF]
Zheng Y +5 more
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Science, 1980
The electron-hole pair formation that occurs at the interface between a semiconductor and a solution upon absorption of light leads to oxidation or reduction reactions of solution species. The principles of such photodriven processes are described as well as applications of semiconductors in electrochemical cells and as particulate systems for carrying
Yu. Ya. Gurevich +2 more
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The electron-hole pair formation that occurs at the interface between a semiconductor and a solution upon absorption of light leads to oxidation or reduction reactions of solution species. The principles of such photodriven processes are described as well as applications of semiconductors in electrochemical cells and as particulate systems for carrying
Yu. Ya. Gurevich +2 more
openaire +3 more sources
Synthetic Semiconductor Photoelectrochemistry
The Chemical Record, 2021AbstractIn the field of synthetic organic chemistry, photochemical and electrochemical approaches are often considered to be competing technologies that induce single electron transfer (SET). Recently, their fusion, i. e., the “photoelectrochemical” approach, has become the focus of attention. In this approach, both solar and electrical energy are used
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Upconversion-powered photoelectrochemistry
Chem. Commun., 2012Upconversion photochemistry occurring between palladium(II) octaethylporphyrin (PdOEP, 1) and 9,10-diphenylanthracene (DPA, 2) in toluene successfully sensitizes nanostructured WO(3) photoanodes (E(g) = 2.7 eV) to sub-bandgap non-coherent green photons at low power density.
Khnayzer, Rony S. +5 more
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