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Bimetallic MOF(Mn/Co)constructed by active dicyandiamide linker for a promising combustion catalyst of solid propellant

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摘要 Combustion catalyst is a key modifier for the performance of composite solid propellant.To exploit highefficiency combustion catalyst,a fascinating bimetallic metal-organic framework[MnCo(EIM)_(2)(DCA)_(2)]n(1)was constructed by an active dicyandiamide(DCA)linker,Mn^(2+),Co^(2+)centers,and an 1-ethylimidazole(EIM)ligand.1 possesses good thermal stability(Tp=205℃),high energy density(Eg=24.34 kJ/g,Ev=35.93 kJ/cm^(3)),and insensitivity to impact and frictional stimulus.The catalytic effects of 1 contrasted to monometallic coordination compounds Mn(EIM)_(4)(DCA)_(2)(2)and Co(EIM)_(4)(DCA)_(2)(3)on the thermal decomposition of AP/RDX composite were investigated by a DSC method.The decomposition peak temperatures of AP and RDX of the composite decreased to 335.8℃ and 206.4℃,respectively,and the corresponding activation energy decreased by 27.3%and 43.6%,respectively,which are better than the performances of monometallic complexes 2 and 3.The gas products in the whole thermal decomposition stage of the sample were measured by TG-MS and TG-IR,and the catalytic mechanism of 1 to AP/RDX was further analyzed.This work reveal potential application of bimetallic MOFs in the composite solid propellants.
出处 《Defence Technology(防务技术)》 2025年第8期203-212,共10页 Defence Technology
基金 supported by the National Natural Science Foundation of China(Grant No.22175025) State Key Laboratory of Explosion Science and Safety Protection(Grant No.YBKT22-03) the Natural Science Foundation of Chongqing(Grant No.CSTB2023 NSCQ-LZX0098) the Chongqing Municipal Education Commis-sion(Grant No.KJZD-M202301404).
作者简介 Corresponding author:Huisheng Huang,E-mail addresses:h.s.huang@hotmail.com;Corresponding author:Zhimin Li,E-mail addresses:,lizm@bit.edu.cn.
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  • 1Taylor R H. Solid proprllant formations with controlled burn rate and reduced smoke:US, 5334270[P]. 1994.
  • 2Denisyuk A P, Denidobal L A, Galkin V I. The primary zone in the combustion of solid propellants containing catalysts [J]. Combustion, Explosion and Shock Waves, 1995,31(2) :161-167.
  • 3Kosowski B M. Propellant burning rate enhancements and thermal behavior of ultra-fine powder [C]// 4th International Symposium of Special Topics in Chemical Propulsion. New York: Begell House Inc Publishers, 1996.
  • 4Baughman R, Zakhidov A A, Heer W A. Carbon Nanotubes: the route toward application [J].Science, 2002,297:787-792.
  • 5Shukla M K, Leszczynski J. A density functional theory study on the effect of shape and size on the ionization potential and electron affinity of different carbon nanostruetures[J]. Chemical Physics Letters, 2006(428) : 317-320.
  • 6Rinzler A G, Smalley R E. Fullerene pipes[J]. Science, 1998,280 :1253-1256.
  • 7Jiang H J, Zhu L B, Moon K S, et al. The preparation of stable metal nanoparticles on carbon nanotubes whose surfaces were modified during production[J]. Carbon, 2007(45) :655-661.
  • 8HUANG YAN, LIN Jun-an, DING Xiao-wei, et al. Coating carbon nanotubes with iron oxide using methanol-thermal reaction [J].Materials Letters, 2007(61) : 697-700.
  • 9Gurdip S, Felixa S P, Sonib P. Thermolysis and kinetics of RDX and some of its plastic bonded explosives [J]. Thermo-chimica Acta, 2005 (426) : 131-139.
  • 10徐宏,刘剑洪,陈沛,赵凤起,田德余.纳米氧化铁的制备及其对吸收药热分解催化作用的研究[J].火炸药学报,2002,25(3):51-52. 被引量:24

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