Citation:
Ying-Lei Wang, Feng-Qi Zhao, Yue-Ping Ji, Jian-Hua Yi, Ting An, Wei-Xiao Liu. Synthesis, crystal structure and thermal behavior of 4-amino-3,5-dinitropyrazole copper salt[J]. Chinese Chemical Letters,
;2014, 25(6): 902-906.
doi:
10.1016/j.cclet.2014.01.011
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A novel energetic combustion catalyst, 4-amino-3,5-dinitropyrazole copper salt ([Cu(adnp)2(H2O)2]), was synthesized in a yield of 93.6% for the first time. The single crystal of [Cu(adnp)2(H2O)2] was determined by single crystal X-ray diffraction. It crystallizes in a triclinic system, space group P 1 with crystal parameters a=5.541(3)Å, b=7.926(4)Å, c=10.231(5)Å, b=101.372(8)°, V=398.3(3)Å3, Z=1, m=1.467 mm-1, F(0 0 0)=243, and Dc=2.000 g cm-3. The thermal behavior and non-isothermal decomposition reaction kinetics of [Cu(adnp)2(H2O)2] were studied by means of different heating rate differential scanning calorimetry (DSC). The kinetic equation of major exothermic decomposition reaction for [Cu(adnp)2(H2O)2] was obtained. The entropy of activation (ΔS≠), enthalpy of activation (ΔH≠), free energy of activation (ΔG≠), the self-accelerating decomposition temperature (TSADT) and the critical temperature of thermal explosion (Tb) are 59.42 J mol-1 K-1, 169.5 kJ mol-1, 1141.26 kJ mol-1, 457.3 K and 468.1 K, respectively.
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-
[1]
[1] J.H. Yi, F.Q. Zhao, W.L. Hong, et al., Effect of Bi-NTO complex on thermal behaviors, nonisothermal reaction kinetics and burning rates of NG/TEGDN/NC propellant, J. Hazard. Mater. 176 (2010) 257-261.
-
[2]
[2] J.H. Yi, F.Q. Zhao, B.Z. Wang, et al., Thermal behaviors, nonisothermal decomposition reaction kinetics, thermal safety and burning rates of BTATz-CMDB propellant, J. Hazard. Mater. 181 (2010) 432-439.
-
[3]
[3] Y.L. Wang, F.Q. Zhao, J.H. Yi, New progress of study on combustion catalysts used for solid rocket propellants, Chin. J. Explos. Propell. 35 (2012) 1-7.
-
[4]
[4] P.B. Kulkarni, G.N. Purandare, J.K. Nair, et al., Synthesis, characterization, thermolysis and performance evaluation studies on alkali metal salts of TABA and NTO, J. Hazard. Mater. 119 (2005) 53-61.
-
[5]
[5] Q.Q. Qiu, K.Z. Xu, S.H. Yang, et al., Syntheses and characterizations of two new energetic copper-amine-DNANT complexes and their effects on thermal decomposition of RDX, J. Solid State Chem. 205 (2013) 205-210.
-
[6]
[6] W.Q. Pang, X.Z. Fan, Y.N. Xue, et al., Study on the compatibility of tetraethylammonium decahydrodecaborate (BHN) with some energetic components and inert materials, Propell. Explos. Pyrotech. 38 (2013) 278-285.
-
[7]
[7] R.D. Schmidt, G.S. Lee, P.F. Pagoria, A.R. Mitchell, R. Gilardi, Synthesis and properties of a new explosive 4-amino-3,5-dinitro-1H-pyrazole(LLM-116), Report UCRL-ID-148510.
-
[8]
[8] R.D. Schmidt, G.S. Lee, P.F. Pagoria, A.R. Mitchell, R. Gilardi, Synthesis of 4-amino-3,5-dinitro-1H-pyrazole using vicarious nucleophilic substitution of hydrogen, J. Heter. Chem. 38 (2001) 1227-1230.
-
[9]
[9] Y.L. Wang, F.Q. Zhao, Y.P. Ji, et al., Synthesis and thermal behaviors of 4-amino-3,5-dinitro-1H-pyrazole, J. Anal. Appl. Pyrol. 98 (2012) 231-235.
-
[10]
[10] G. Hervé, C. Roussel, H. Graindorge, Selective preparation of 3,4,5-trinitro-1Hpyrazole: a stable all-carbon-nitrated arene, Angew. Chem. Int. Ed. 49 (2010) 3177-3181.
-
[11]
[11] G. HervéVerbevie, Dinitropyrazole derivatives, their preparation, and energetic compositions comprising them, US 2009,018,693,1A1, 2009.
-
[12]
[12] Y.Q. Zhang, A.P. Damon, M.S. Jean'ne, 4-Nitramino-3,5-dinitropyrazole-based energetic salts, Chem. Eur. J. 18 (2012) 987-994.
-
[13]
[13] Y.L. Wang, F.Q. Zhao, K.Z. Xu, et al., Synthesis, crystal structure and thermal behavior of 4-amino-3,5-dinitropyrazole potassium salt, Inorg. Chim. Acta 405 (2013) 505-510.
-
[14]
[14] S.H. Wu, J.H. Chi, C.C. Huang, N.K. Lin, J.J. Peng, Thermal hazard analyses and incompatible reaction evaluation of hydrogen peroxide by DSC, J. Therm. Anal. Calorim. 102 (2010) 563-568.
-
[15]
[15] Y.L. Wang, K.Z. Xu, F.Q. Zhao, et al., Synthesis, crystal structure, and thermal behaviors of 3-nitro-1,5-bis(4,40-dimethylazide)-1,2,3-triazolyl-3-azapentane (NDTAP), Propell. Explos. Pyrotech. 38 (2013) 644-650.
-
[16]
[16] N. Fischer, T.M. Klapötke, S. Marchner, et al., A selection of alkali and alkaline earth metal salts of 5,50-Bis(1-hydroxytetrazole) in pyrotechnic compositions, Propell. Explos. Pyrotech. 38 (2013) 448-459.
-
[17]
[17] Y.L. Wang, F.Q. Zhao, Y.P. Ji, et al., Synthesis and thermal behaviors of 1, 8-dihydroxy-4, 5-dinitroanthraquinone barium salt, J. Anal. Appl. Pyrol. 105 (2014) 295-300.
-
[18]
[18] K.Z. Xu, X.G. Zuo, H. Zhang, et al., Synthesis, crystal structure and thermal behavior of Cs(DNDZ), Chin. J. Inorg. Chem. 27 (2011) 2257-2262.
-
[19]
[19] G.M. Sheldrick, SHELXTL-97, Structure Determination Software Suite, Bruker AXS, Madison, WI, 2008.
-
[20]
[20] H.E. Kissinger, Reaction kinetics in differential thermal analysis, Anal. Chem. 29 (1957) 1702-1706.
-
[21]
[21] T. Ozawa, A new method of analyzing thermogravimetric data, Bull. Chem. Soc. Jpn. 38 (1957) 1881-1886.
-
[22]
[22] R.Z. Hu, S.L. Gao, F.Q. Zhao, et al., Thermal Analysis Kinetics, 2nd ed., Science Press, Beijing, 2008 (in Chinese).
-
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