Thermal behavior of Al/MoO3 xerogel nanocomposites

被引:29
|
作者
Seo, Han-Su [1 ]
Kim, Jae-Kyeong [1 ]
Kim, Jun-Woo [1 ]
Kim, Hyoun-Soo [2 ]
Koo, Kee-Kahb [1 ]
机构
[1] Sogang Univ, Dept Chem & Biomol Engn, Seoul 121742, South Korea
[2] Agcy Def Dev, Taejon 305600, South Korea
关键词
Thermite; Sol-gel; Nanocomposite; SOL-GEL SYNTHESIS; NANOENERGETIC MATERIALS; MOLYBDENUM; COMBUSTION;
D O I
10.1016/j.jiec.2013.04.008
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Sol-gel process using molybdenum alkoxides was employed to prepare Al/MoO3 xerogel nanocomposites as a thermite with better performance by improvement of interfacial contact area between the oxidizer and fuel. Micromorphology and thermite reaction characteristics of Al/MoO3 xerogel nanocomposites were analyzed by scanning electron microscopy (SEM) and thermogravimetry/ differential scanning calorimetry (TG/DSC), respectively. In the present Al/MoO3 xerogel system, it was found that exothermic enthalpy increases as the Al/Mo mole ratio increases and then decreases when Al/ Mo mole ratio is larger than 6 indicating that optimum mole ratio of Al/Mo is 6 with reaction enthalpy of 420.58 J/g. (C) 2013 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:189 / 193
页数:5
相关论文
共 50 条
  • [31] Effect of the thickness of the MoO3 layers on optical properties of MoO3/Ag/MoO3 multilayer structures
    Nguyen, D-T.
    Vedraine, S.
    Cattin, L.
    Torchio, P.
    Morsli, M.
    Flory, F.
    Bernede, J. C.
    [J]. JOURNAL OF APPLIED PHYSICS, 2012, 112 (06)
  • [32] AC CONDUCTIVITY STUDIES ON AL/MOO3/AL SANDWICH STRUCTURES
    SABHAPATHI, VK
    HUSSAIN, OM
    UTHANNA, S
    NAIDU, BS
    REDDY, PJ
    JULIEN, C
    BALKANSKI, M
    [J]. MATERIALS SCIENCE AND ENGINEERING B-SOLID STATE MATERIALS FOR ADVANCED TECHNOLOGY, 1995, 32 (1-2): : 93 - 97
  • [33] Chemical and spectroscopic surface science investigation of MoO3 and MoO3/Al2O3 ultrathin films
    Street, SC
    Goodman, DW
    [J]. JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 1997, 15 (03): : 1717 - 1723
  • [34] Thermal spreading of MoO3 onto silica supports
    Braun, S
    Appel, LG
    Camorim, VL
    Schmal, M
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (28): : 6584 - 6590
  • [35] Direct thermal intercalation of amine into layered MoO3
    Jing, Yi
    Pan, Qingyi
    Cheng, Zhixuan
    Dong, Xiaowen
    Xiang, Yixian
    [J]. MATERIALS SCIENCE AND ENGINEERING B-SOLID STATE MATERIALS FOR ADVANCED TECHNOLOGY, 2007, 138 (01): : 55 - 59
  • [36] Synthesis and dye adsorption studies of WO3/MoO3 nanocomposites
    Kumar, Naresh
    Kaur, Jaspreet
    Kumar, Vivek
    Preet, Simran
    Kumar, Rajesh
    [J]. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2023, 174
  • [37] Thermal spreading of MoO3 in H-ZY
    Mosqueira, L.
    Angeles-Chavez, C.
    Torres-Garcia, E.
    [J]. MATERIALS CHEMISTRY AND PHYSICS, 2011, 126 (03) : 930 - 937
  • [38] Thermal plasma source for processing of MoO3 crystals
    Lebid, A.
    Veklich, A.
    Boretskij, V.
    Savenok, S.
    Andreev, O.
    [J]. 13TH HIGH-TECH PLASMA PROCESSES CONFERENCE (HTPP-2014), 2014, 550
  • [39] Investigation on the thermal decomposition and thermal reaction process of PTFE/Al/MoO3 fluorine-containing thermite
    Wu, Jiaxiang
    Feng, Bin
    Gao, Zhenru
    Li, Yuchun
    Wu, Shuangzhang
    Yin, Qin
    Huang, Junyi
    Ren, Xinxin
    [J]. JOURNAL OF FLUORINE CHEMISTRY, 2021, 241
  • [40] Influence of Modulation Period on the Thermal Properties and Firing Propertiesof Al/MoO3 Reactive Films
    Ni, De-Bin
    Dang, Peng-Yang
    Xu, Dong
    Yu, Guo-Qiang
    Chen, Li-Kui
    Zhu, Ya-Hong
    Xie, Zhan-Feng
    Chu, En-Yi
    [J]. Hanneng Cailiao/Chinese Journal of Energetic Materials, 2020, 28 (02): : 105 - 111