Capricious 发表于 2025-3-21 18:57:04
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Rizul Gautam,Shailendra Kumar Aryatewater for the degradation of organic pollutants, self-cleaning surfaces, anti-fouling coating and photocatalytic water-splitting. Additional advantages for the photocatalytic oxidations are easier to use, cost-effective and environmentally benign. Nanomaterials, such as TiO., ZnO, Fe.O., NiO and m征服 发表于 2025-3-22 02:54:03
https://doi.org/10.1007/978-3-031-13494-4ructured photocatalysts are considered as most promising materials for water remediation as it utilizes natural sunlight as a source of energy and produces fewer or no toxic by-products. The nanostructured materials as photocatalysts are gaining tremendous interest due to their unique properties, su转折点 发表于 2025-3-22 07:02:56
James Chesko,Thomas Vedvick,Steve Reedcture, better conductivity and extraordinary chemical stability. It is considered as an extremely potential material for development of various nanocomposites for enormous applications. The optical and electrical properties of graphene are enhanced by preparation of its composites with inorganic nan白杨鱼 发表于 2025-3-22 11:45:04
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Ewelina Knapska,Leszek Kaczmarekbic surfaces, from which the dust particles can be easily swept down by the rolling motion of droplets. The second type of self-cleaning surfaces is photocatalytic coatings that can induce the degradation of organic materials upon light-exposure. In this chapter, we present non-conventional hybrid cCommunal 发表于 2025-3-23 03:52:16
G. A. Higgins,M. O. Lawrin,E. M. SellersV) and visible light as well. The luminescence and the upconversion phenomena will be discussed in case of several materials as a possibility to utilize low energy photons. Rare earth metals and their fluorides happen to be one of the most suitable upconverting materials because of their energy leve先行 发表于 2025-3-23 06:19:18
Real-Time Water Movement in a Plantn nanodiamonds (DND) have been synthesized and studied by optical absorption spectroscopy, luminescence excitation, dynamic light scattering and viscometry methods. Binary complexes PVP-Radachlorin® demonstrated electrostatic and donor–acceptor binding of Radachlorin® with PVP detected by spectropho