Here, we focused on the most recent advances made in the visible-light-driven selective organic oxidation transformations and highlighted their reaction mechanisms. Moreover, the future development trend, challenges, and prospective outlook…
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In photocatalytic air purifiers, the catalyst that cleans the air is typically titanium dioxide (sometimes called titania) and it's energized by ultraviolet (UV) light. UV is the short-wavelength light just…
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Photocatalysis is regarded as one of the most promising technologies for indoor volatile organic compounds (VOCs) elimination due to its low cost, safe operation, energy efficiency, and high mineralization efficiency…
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Photocatalytic CH 3 CH 2 OH oxidation with H 2 O to CH 3 COOH was reported to be mediated by ·OH radicals generated by photogenerated holes-participated activation of H…
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The mechanisms of photocatalytic remote oxidation have been elucidated. Hydrogen peroxide, generated on a photocatalyst (TiO 2, Pt−TiO 2, or Ag−TiO 2), is transported in air and then photocleaved into…
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This review explores the potential of photocatalytic and photochemical oxidation of ethylene for effective removal of this gas along the value chain of fruit and vegetables. These techniques involve the…
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The photocatalytic oxidation of NO x has attracted more attention recently because of its efficient removal of NO x, especially for low concentrations of NO x. In this review, the…
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In an investigation of highly dispersed iron species on TiO 2 during photocatalytic selective oxidation of methane to methanol 10, both Fe 2p 3/2 and 2p 1/2 peaks shifted to…
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Acceleration of a photoreaction in the presence of a catalyst
In chemistry, photocatalysis is the acceleration of a photoreaction in the presence of a photocatalyst, the excited state of which "repeatedly interacts with the reaction partners forming reaction intermediates and regenerates itself after each cycle of such interactions."[1] In many cases, the catalyst is a solid that upon irradiation with UV- or visible light generates…