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Titanium dioxide nanocomposites

Tiwari, V., Jiang, J., Sethi, V. and Biswas, P. (2008) One-step synthesis of noble metal titanium dioxide nanocomposites in a flame aerosol reactor. Applied Catalysis A General, 345, 241-246. [Pg.243]

Xiangbo, M., et ah, Controllable synthesis of graphene-based titanium dioxide nanocomposites by atomic layer deposition. Nanotechnology, 2011. 22(16) p. 165602. [Pg.170]

Tai H., Jiang Y., Xie G., Yu J., and Chen X., Fabrication and gas sensitivity of polyani-line-titanium dioxide nanocomposite thin film, Sens. Actuators B, 125(2), 644-650, 2007. [Pg.67]

S-J. Su and N. Kuramoto, Processable polyanihne-titanium dioxide nanocomposites effect of titanium dioxide on conductivity, Synth. Met., 114,147 153 (2000). [Pg.287]

Su S-J, Kuramoto N (2000) Processable polyaniline-titanium dioxide nanocomposites effect of titanium dioxide (m the ctmductivity. Synthetic Met 114(2) 147-153... [Pg.181]

Mo T-C, Wang H-W, Chen S-Y, Yeh Y-C (2008) Synthesis and dielectric proptaties of polyaniline/titanium dioxide nanocomposites. Ceram Int 34(7) 1767-1771... [Pg.181]

Chandra A, Tumg L-S, Gong S, Hall DC, Caulfield DF, Yang H (2007) Study of polystyrene/ titanium dioxide nanocomposites via melt compounding for optical applications. Polym Compos 28(2) 241-250... [Pg.183]

Poly(vinyl alcohoD/Titanium Dioxide Nanocomposites... [Pg.134]

The fabrication of PVA/titanium dioxide nanocomposites with different titanium dioxide (Ti02) loading by using ultrasoxmd irradiation has been described (157). For an improvement of the dispersion of the nanoparticles and for increasing possible interactions between nanoparticles and PVA, the surface of Ti02 nanoparticles was modified by y-aminopropyltriethoxy silane. [Pg.134]

Ahmad, J. and Hagg, M.B. 2013. Polyvinyl acetate/titanium dioxide nanocomposite membranes for gas separation. J. Memb. ScL 445, 200-210. [Pg.584]

Li, Z. Gao, B. Chen, G. Z. Mokaya, R. Sotiropoulos, S. Li Puma, G. Carbon Nanotube/Titanium Dioxide (CNT/Ti02) Core-shell Nanocomposites with Tailored Shell Thickness, CNT Content and Photocatalytic/photoelectrocatalytic Properties. Appl. Catal., B, 2011, 110, 50-57. [Pg.25]

Clay nanocomposites are also being developed as barrier coatings for film and for containers. The nanocomposite is deposited on the film from a solution of PVOH/ EVOH copolymer in a mix of water and isopropyl alcohol which has been used in a supersonic dispersion system to nano-disperse 7 nm diameter silica and titanium dioxide particles. The ratio of polymer to silica depends on the barrier properties required. Typical microgravure equipment can be used to coat the solution onto a plastic substrate. The result reportedly is a transparent barrier coating which is superior to silica- and alumina-coated films, and is comparable to aluminum-coated materials. Oxygen permeability at a coating thickness of 2 pm is less than 1 cc/m d atm, and moisture permeation less than f g/m d. Costs are reported to be competitive with ceramic coatings [4]. [Pg.254]

N. Hebestreit, J. Hofmann, U. Rammelt, and W. Plieth, Physical and electrochemical characterization of nanocomposites formed from polythiophene and titanium dioxide, Electrochim. Acta, 48, 1779-1788 (2003). [Pg.371]

Q.-T. Vu, M. Pavlik, N. Hebestreit, U. Rammelt, W. Plieth, and J. Pfleger, Nanocomposites based on titanium dioxide and pol3dhiophene Structure and properties. React Func. Polym., 65, 69-77 (2005). [Pg.371]

Gurevitch, I., Buonsanti, R., Teran, A. A., Gludovatz, B., Ritchie, R. 0., Cabana, J., et al. (2013). Nanocomposites of titanium dioxide and polystyrene-poly(ethylene oxide) block copolymer as solid-state electrol3Aes for lithium metal batteries, /. Eiectrochem.. Soc.. 160(9), A1611-A1617. [Pg.942]

Karian TIG, et al. A study of the interaction between nanocomposites and titanium dioxide pigment in thin-film applications. International Polyolefins, conference proceedings. Society of Plastics Engineers 2008. [Pg.257]

In the first class of CPs nanocomposites, the oxides considered as secondary component are titanium dioxide (TiO ), zirconium dioxide (ZrOj), silicon dioxide (SiO ), aluminium oxide (Al O ), cadmium oxide (CdO) and zinc oxide (ZnO) [19, 27, 31, 48-52]. Titanium dioxide nanoparticles have excellent properties such as charge carrier, oxidising power, non-toxicity, chemical and photo stability. Conductive PANI/TiO nanocomposites combine the qualities of PANI and nanocrystalline TiO within a single material, thereby developing multifunctional materials with combined properties which have very strong potential applications. [Pg.553]


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See also in sourсe #XX -- [ Pg.3 ]




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