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纳米PbSnO3的制备及其燃烧催化性能的研究
引用本文:洪伟良,刘剑洪,田德余,罗仲宽,张培新,魏 波.纳米PbSnO3的制备及其燃烧催化性能的研究[J].无机化学学报,2004,20(3):278-282.
作者姓名:洪伟良  刘剑洪  田德余  罗仲宽  张培新  魏 波
作者单位:深圳大学师范学院化生系,深圳,518060
基金项目:国防科技重点实验室基金资助项目(No.51455030303QT5101)。
摘    要:Nanocomposite PbSnO3was synthesized by coprecipitation method , and its phase evolution process was investigated. The particle size, crystal form, and phase of samples were determined with XRD, TEM and EDS. The catalytic actiyity of sample on the thermal decomposition of RDX was investigated by DSC. The results show that nanocomposite PbSnO3with the diameter of 9 nm can be obtained by calcining at 600 ℃ for 2 h, which crystal is cubic (pyrochlore type). The catalytic actiyity of nanocomposite PbSnO3on the thermal decomposition of RDX is much higher than that of normal PbSnO3. The nanocomposite PbSnO3can decrease the peak temperature of thermal decomposition of RDX from 240.1 ℃ to 236.5 ℃, and the decomposition enthalpy ΔH of RDX increases 722 J·g-1 (about 70%).

关 键 词:纳米复合粒子  PbSnO3  共沉淀法  催化剂  黑索今  热分解
修稿时间:2003年6月24日

Synthesis and Combustion Catalytic Actiyity of Nanocomposite PbSnO3
HONG Wei-Liang,LIU Jian-Hong,TIAN De-Yu,LUO Zhong-Kuan,ZHANG Pei-Xin and WEI Bo.Synthesis and Combustion Catalytic Actiyity of Nanocomposite PbSnO3[J].Chinese Journal of Inorganic Chemistry,2004,20(3):278-282.
Authors:HONG Wei-Liang  LIU Jian-Hong  TIAN De-Yu  LUO Zhong-Kuan  ZHANG Pei-Xin and WEI Bo
Institution:Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060,Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060,Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060,Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060,Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060 and Department of Chemistry and Biology, Normal College, Shenzhen University, Shenzhen 518060
Abstract:
Keywords:nanocomposite particle  PbSnO3  coprecipitation  catalyst    RDX  thermal decomposition
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