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Effects of postthermal treatment and UV irradiation on the structure of titania-polyacrylate nanocomposites 被引量:2

Effects of postthermal treatment and UV irradiation on the structure of titania-polyacrylate nanocomposites
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摘要 The effects of postthermal treatment and irradiation time on the structure and thermal stability of TiO2/polyacrylate nanocomposites by a sol-gel process in reverse micelles and subsequent rapid photopolymerization were investigated, and the hybrid films were characterized by thermal gravimetry analysis (TGA), X-ray photoelectron spectrum (XPS), and atomic force microscopy (AFM). XPS data suggested that the prolongation of irradiation time and the postthermal treatment promoted titania formation, with the former affecting more remarkably. TGA data showed that TiO2-hybrid films could upgrade the decomposition onset temperature (Tonset) as well as the temperature at which there is a maximum mass loss rate (Tmax). AFM data demonstrated that the inorganic titania particles with a mean diameter of 25.26-28.84 nm were homogeneously distributed in the organic matrix. The effects of postthermal treatment and irradiation time on the structure and thermal stability of TiO2/polyacrylate nanocomposites by a sol-gel process in reverse micelles and subsequent rapid photopolymerization were investigated, and the hybrid films were characterized by thermal gravimetry analysis (TGA), X-ray photoelectron spectrum (XPS), and atomic force microscopy (AFM). XPS data suggested that the prolongation of irradiation time and the postthermal treatment promoted titania formation, with the former affecting more remarkably. TGA data showed that TiO2-hybrid films could upgrade the decomposition onset temperature (Tonset) as well as the temperature at which there is a maximum mass loss rate (Tmax). AFM data demonstrated that the inorganic titania particles with a mean diameter of 25.26-28.84 nm were homogeneously distributed in the organic matrix.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2006年第4期372-379,共8页 北京科技大学学报(英文版)
关键词 titanium dioxide reverse micelles sol-gel method PHOTOPOLYMERIZATION NANOCOMPOSITES titanium dioxide reverse micelles sol-gel method photopolymerization nanocomposites
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  • 1P. Sreekumari Nair,T. Radhakrishnan,N. Revaprasadu,G.A. Kolawole,A.S. Luyt,V. Djokovi?.Structure and properties of PbS–polyacrylamide nanocomposites[J].Applied Physics A.2005(4)
  • 2T. N. Smirnova,O. V. Sakhno,V. I. Bezrodnyj,J. Stumpe.Nonlinear diffraction in gratings based on polymer–dispersed TiO 2 nanoparticles[J].Applied Physics B.2005(8)
  • 3T. I. Izaak,O. V. Babkina,G. M. Mokrousov.Morphology, texture, and properties of products obtained by annealing of porous silver-polyacrylate nanocomposites[J].Technical Physics.2005(5)
  • 4Nora Fran?ois,Berta Ginzberg,Sara A. Bilmes.Parameters Involved in the Sol-Gel Transition of Titania in Reverse Micelles[J].Journal of Sol - Gel Science and Technology (-).1998(1-3)

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