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  1. 1 Ιουν 2018 · This review details on multifunctional applications with enhanced properties of noble metals-TiO 2 nanocomposites in fields of photocatalysis, photovoltaic, SERS and antibacterial activities. Included are the recent developments and progress in multidisciplinary application of these plasmonic photocatalysts.

  2. The growth of TiO 2 nanorod bundles is realized by using a dip-coating and hydrothermal growth method. TiO 2 nanorod-bundles exhibit square-column appearance with size of about 340–400 nm and length of ∼6 μm, and they are in fact composed of small nanorods with diameters of ∼30 nm.

  3. 28 Αυγ 2018 · The obtained carbonized fibers displayed rapid adsorption of methylene blue, phenol, and Cr (VI) and exhibited high adsorption capacity, outperforming commercial activated carbon powders having 50% more surface area.

  4. 15 Ιαν 2018 · After loading TiO2 NRs by FeCo-Al2O3 catalyst and the CVD growth of carbon nanotubes, the synthetic TiO2 nanoribbons converted entirely to TiO2-B nanoribbons with nanopits structure.

  5. 14 Απρ 2021 · The silanization for TiO 2 nanorods-WCF improved both the mechanical interlocking and chemical interaction among TiO 2 nanorods, carbon fiber and phenolic, as well as the interfacial bonding between TiO 2 nanorod and carbon fiber, thus formed an effective transition interface.

  6. 27 Νοε 2015 · In the present work, we have prepared TiO2 nanorod bundles on carbon fibers as flexible and weaveable photocatalyst/photoelectrode. The growth of TiO2 nanorod bundles is realized by...

  7. 1 Σεπ 2019 · Recycle and reuse of the nanosized photocatalysts is a common challenge in the catalyst field. To address this issue, we rationally load meso ‑carbon@TiO 2 core-shell microspheres on carbon fiber felt to synthesize macro-sized meso‑carbon@TiO2 /carbon fiber composites by an in-situ adsorption method.

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