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Controllable Synthesis of Polycrystalline Nanostructure TiO2 by Gaseous-Liquid Detonation Method
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1.School of Mechanics and Civil Engineering, China University of Mining and Technology, Xuzhou 221116, China;2.State Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Xuzhou 221116, China;3.Explosive Mechanics and Engineering Blasting Research Center, China University of Mining and Technology, Xuzhou 221116, China;4.School of Safety Engineering, China University of Mining and Technology, Xuzhou 221116, China

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National Natural Science Foundation of China (12072363); National Key Research and Development Project (2020YFA0711800)

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    Abstract:

    The polycrystalline nano-TiO2 was synthesized by the gaseous-liquid detonation (GLD) method using H2, O2, and TiCl4 as the mixture precursors. The effects of different molar ratios of precursors and initial reaction pressures on the nano-TiO2 crystalline structures were studied. The nanocrystal structures, components, particle size, and morphology were characterized by the X-ray diffraction (XRD) and transmission electron microscopy (TEM). The results demonstrate that the nano-TiO2 consists of pure anatase-TiO2, pure rutile-TiO2, and the mixtures of spherical or quasi-spherical morphologies with particle size of 20~150 nm. Furthermore, the formation mechanism of nano-TiO2 by GLD method was analyzed. The relevant GLD parameters were calculated based on the C-J theory and the related chemical reaction data, which effectively verifies the influence of different molar ratios of precursors and initial pressures on the controllable synthesis of polycrystalline nano-TiO2.

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[Luo Ning, Sun Xin, Fan Xueru, Liang Hanliang, Chen Yanlong, Zhang Guimin, Dong Jiwei, Zhai Cheng. Controllable Synthesis of Polycrystalline Nanostructure TiO2 by Gaseous-Liquid Detonation Method[J]. Rare Metal Materials and Engineering,2022,51(1):119~126.]
DOI:10.12442/j. issn.1002-185X.20200895

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History
  • Received:November 19,2020
  • Revised:December 10,2020
  • Adopted:December 23,2020
  • Online: February 04,2022
  • Published: January 28,2022