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Herein, recent advancements in the activity of visible light semiconductors are presented, including both platinum and non-platinum group materials.
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The laureates triggered a transformation of lighting technology when they produced bright blue light from semiconductors in the 1990s, something scientists had struggled with for decades, the Nobel committee said.
Researchers trying to coax light from semiconductors have a case of the blues, but they couldn't be happier.
Previous studies have reported that nanostructure surfaces can efficiently couple incident light into semiconductors [1 3].
Photocurrents induced by linearly polarized light in semiconductors have been intensively studied for decades [1 7].
Under light irradiation, semiconductors (TiO2, Ag3PO4, WO3, CdS, and ZnS etc).
UV vis DRS data revealed that the nanocomposites are visible light absorbing semiconductors with band gap ranging from ∼2.1 1.96 eV.
Photo-induced electron transfer is an electron transfer that occurs when certain photoactive materials interact with light, including semiconductors that can be photo-activated, such as many solar cells, biological systems like those used in photosynthesis, and small molecules with suitable absorptions and redox states [54, 55, 56, 57, 58, 59, 60, 61, 62].
Photo-induced electron transfer is an electron transfer that occurs when certain photoactive materials interact with light, including semiconductors that can be photo-activated, such as many solar cells, biological systems like those used in photosynthesis, and small molecules with suitable absorptions and redox states [36, 37, 38, 39, 40, 41, 42].
Because the best light-absorbing semiconductors are also the best light emitters, Green hit upon the idea that texturing silicon could improve the efficiency of silicon LEDs as well.
Some electronic applications depend on the interactions between light and semiconductor materials mentioned in the section Optoelectronics.
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