TiO2 aerogel composite high-efficiency photocatalysts for environmental treatment and hydrogen energy production
Photocatalysis is a new type of renewable energy technology used in environmental treatment and hydrogen energy production. In this regard, a new class of photocatalysts, TiO aerogels, are attractive for having the chemical characteristics of TiO nanomaterials such as high catalytic activity, good s...
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Veröffentlicht in: | Nanotechnology reviews (Berlin) 2023-05, Vol.12 (1), p.423-31 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Photocatalysis is a new type of renewable energy technology used in environmental treatment and hydrogen energy production. In this regard, a new class of photocatalysts, TiO
aerogels, are attractive for having the chemical characteristics of TiO
nanomaterials such as high catalytic activity, good stability, non-toxic, and non-polluting, and the structural characteristics of aerogels such as large specific surface area, high porosity, the 3-dimensional interconnected network structure composed of relatively uniform nanoparticles, and high light transmittance. Here we review the recent progress in TiO
aerogels for photocatalysis, focusing on preparation techniques, the crystalline phases’ influence on photocatalytic properties, the modification of photocatalytic properties, and the analysis and discussion of future development. In particular, we first summarize various preparation techniques, including sol–gel method, nanoparticles self-assembly synthesis, and high-temperature aerosol technique, then detail the structure and composition of TiO
crystalline phases that affect the photocatalytic properties. Subsequently, we discuss strategies to further enhance the photocatalytic properties of TiO
aerogels by the composite of SiO
aerogel semiconductors, the doping of metal dopants, and the doping or composite of non-metallic substances, and elaborate the modification mechanism and the modification effect achieved. Finally, combined with the research status of TiO
aerogels and the development experience of other aerogels, we conduct a reasonable analysis and discussion on their further research directions and industrialization roads. |
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ISSN: | 2191-9089 2191-9097 |
DOI: | 10.1515/ntrev-2022-0490 |