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Explosive Coordination Materials : Acyclic Ligands - Review

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Coordination explosives form a significant group of energetic materials, which are mainly considered as novel primary explosives. Due to their modular structure, these compounds offer many possibilities for modifying their physicochemical and energetic properties. In this review the properties of complexes containing molecules such as ammonia, hydrazine, ethylenediamine, carbohydrazide, and guanidine derivatives are presented. The types of ligands and their influence on the physicochemical properties and detonation parameters are discussed.
Rocznik
Strony
365--378
Opis fizyczny
Bibliogr. 45 poz., rys., tab.
Twórcy
  • Military Institute of Armament Technology, Prymasa S. Wyszyńskiego 7 St., 05-220 Zielonka, Poland
Bibliografia
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  • [22] Hariharanath, B.; Chandrabhanu, K.S.; Rajendran, A.G.; Ravindran, M.; Kartha, C.B. Detonator Using Nickel Hydrazine Nitrate as Primary Explosive. Def. Sci. J. 2006, 56(3): 383-389; DOI: 10.14429/dsj.56.1904.
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  • [26] Chhabra, J.S.; Talawar, M.B.; Makashir, P.S.; Asthana, S.N.; Singh, H. Synthesis, Characterization and Thermal Studies of (Ni/Co) Metal Salts of Hydrazine: Potential Initiatory Compounds. J. Hazard. Mater. 2003, A99: 225-239; DOI: 10.1016/s0304-3894(02)00247-9.
  • [27] Bełzowski, J.; Wojewódka, A.; Romanowski, M. Coordination Explosives. Chemik 2010, 64(1): 21-24.
  • [28] Narang, K.K.; Singh, M.K.; Singh, K.B.; Lal, R.A. Synthesis and Characterization of Some Cobalt(II), Nickel(II), Zinc(II) and Cadmium(II) Hydrazine Azides. Synth. React. Inorg. Met. Org. Chem. 1966, 26(4): 573-489; DOI: 10.1080/00945719608004763.
  • [29] Singh, G.; Pandey, D.K. Studies on Energetic Compounds Part 27: Kinetics and Mechanism of Thermolysis of Bis(Ethylenediamine)Metal Nitrates and Their Role in the Burning Rate of Solid Propellants. Propellants Explos. Pyrotech. 2003, 28(5): 231-239; DOI: 10.1002/prep.200300010.
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  • [31] Yang, L.; Wu, B.; Zhang, T.; Liu, Z.; Zhang, J. Preparation, Crystal Structure, Thermal Decomposition and Explosive Properties of [Cd(en)(N₃)₂]n. Propellants Explos. Pyrotech. 2010, 35: 521-528; DOI: 10.1002/prep.200900095.
  • [32] Sonawane, S.H.; Gore, G.M.; Polke, B.G.; Nazare, A.N.; Asthana, S.N. Transition Metal Carbohydrazide Nitrates: Burn-rate Modifiers for Propellants. Def. Sci. J. 2006, 56(3): 391-398.
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  • [35] Fischer, N.; Joas, M.; Klapötke, T.M.; Stierstorfer, J. Transition Metal Complexes of 3-Amino-1-nitroguanidine as Laser Ignitible Primary Explosives: Structures and Properties. Inorg. Chem. 2013, 52(23): 13791-13802; DOI: 10.1021/ic402038x.
  • [36] Li, Z.Z.; Zeng, D.; Zhou, Z.; Zhou, M.; Zhang, T.; Huang, T.; Zhang, J.; Yang, L. A Comprehensive Study of the Electrostatic Discharge Sensitivity and Chargeability of Tris(carbohydrazide)zinc Perchlorate. Cent. Eur. J. Energ. Mater. 2014, 11(4): 553-573.
  • [37] Liu, R.; Zhou, Z.; Yang, L.; Wu, B.; Huang, H.; Zhang, T. Synthesis, Crystal Structure, and Properties of a Novel, Highly Sensitive Energetic, Coordination Compound: Iron (II) Carbohydrazide Perchlorate. Cent. Eur. J. Energ. Mater. 2013, 10(1): 17-36.
  • [38] Joas, M.; Klapötke, T.M. Laser Initiation of Tris(carbohydrazide)metal(II) Perchlorates and Bis(carbohydrazide)diperchloratocopper(II). Propellants Explos. Pyrotech. 2015, 40: 246-252; DOI: 10.1002/prep.201400142.
  • [39] Sun, Y.H.; Zhang, T.L.; Zhang, J.G.; Qiao, X.J.; Yang, L.; Zheng, H. Kinetics Study on the Exothermic Decomposition Reaction of [Cd(CHZ)₃](ClO₄)₂. Chin. J. Chem. 2005, 23(12): 1607-1610; https://doi.org/10.1002/cjoc.200591607.
  • [40] Huang, H.; Zhang, T.; Zhang, J.; Wang, L. A Screened Hybrid Density Functional Study on Energetic Complexes: Cobalt, Nickel and Copper Carbohydrazide Perchlorates. J. Hazard. Mater. 2010, 179: 21-27; DOI: 10.1016/j.jhazmat.2010.02.036.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0873857f-62da-45a6-a1ae-fd50ae5097f0
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