王振宇.国外近年研制的新型不敏感单质炸药[J].含能材料, 3,1(4): 227-240.WANG Zhen-yu.Development on some new insensitive individual explosives abroad[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 3,1(4): 227-240.
[2]
Fried L E, Manaa M R, Pagoria P F, et al.Design and synthesis of energetic materials[J].Annual Review of Materials Research, 1,1: 291-321.
[3]
毕福强, 王伯周, 王锡杰, 等.1,4-二硝基呋咱并[3,4-b]哌嗪(DNFP)的合成[J].含能材料, 9,7(5): 537-540.BI Fu-qiang, WANG Bo-zhou, WANG Xi-jie, et al.Synthesis of 1,4-Dinitrofurazano[3,4-b]piperazine (DNFP)[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 9,7(5): 537-540.
[4]
Leonard P W, Chavez D E, Pagoria P F, et al.Azotetrazolylfurazan and nitrogenous salt derivatives[J].Propellants, Explosies, Pyrotechnics, 1,6: 233-239.
[5]
Zstmark H, Langlet A, Bergman H, et al.FOX-7 a new explosive with low sensitivity and high performance[C]//The Eleventh International Symposium on Detonation, Colorado, USA.1998: 807-812.
[6]
Zstmark H, Bergman H, Bemn U, et al.2,2-dinitroethene-1,1-diamine(FOX-7): properties, analysis and scale up[C]//Int.Annu.Conf.of ICT, Karlsruhe, Germany.2001: 26.1-26.21.
[7]
周诚, 黄新萍, 周彦水, 等.FOX-7的晶体结构和热分解特性[J].火炸药学报, 7,0(1): 60-63.ZHOU Cheng, HUANG Xin-ping, ZHOU Yan-shui, et al.Crystal structure and thermal decomposition of FOX-7[J].Chinese Journal of Explosives & Propellants, 7,0(1): 60-63.
[8]
Kerth J, Kuglstatter W.Synthesis and characterization of 2,6-diamino-3,5-dinitropyrazine-1-oxide(NPEX-1) [C]//Int.Annu.Conf.of ICT, Karlsruhe, Germany.2001: 166.1-166.11.
[9]
Tran T D, Pagoria P F, Hoffman D M, et al.Chracterization of 2,6-diamino-3,5-dinitropyrazine-1-dioxide(LLM-105) as an insensitive high explosive material[R].2002, UCRL-JC-147932.
[10]
Pagoria P F, Lee G S, Mitchell A R, et al.The synthesis of amino and nitro substituted heterocycles as insensitive energetic materials[R].2001, UCRL-JC-142918.
[11]
Jin R C, Soo G C, Kwang J K, et al.A candidate of new insensitive high explosive MTNI[C]∥Insensitive Munitions & Energetic Materials Technology Symposium, Enschede, Netherlands.2000: 393-400.
[12]
刘愆, 王伯周, 张志忠, 等.N-脒基脲二硝酰胺盐的合成与性能[J].火炸药学报, 6,9(1): 29-31.LIU Qian, WANG Bo-zhou, ZHANG Zhi-zhong, et al.Synthesis and properties of N-guanylurea dinitramide[J].Chinese Journal of Explosives & Propellants, 6,9(1): 29-31.
[13]
王伯周, 刘愆, 张志忠, 等.新型含能材料FOX-12性能研究[J].含能材料, 4,2(1): 38-39.WANG Bo-zhou, LIU Qian, ZHANG Zhi-zhong, et al.Study on properties of FOX-12[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 4,2(1): 38-39.
[14]
Neutz J, Grosshardt O, Schaufele S, et al.Synthesis, characterization and thermal behavior of guanidinium-5-aminotetrazolate (GA): a new nitrogen-rich compound[J].Propellants, Explosives, Pyrotechnics, 3,8(4): 181-188.
[15]
张建国, 张同来, 张志刚, 等.唑类杂环化合物及其配合物的研究概述[J].含能材料, 1,9(2): 90-93.ZHANG Jian-guo, ZHANG Tong-lai, ZHANG Zhi-gang, et al.A review on azotic heterocyclic compounds and their coordination compounds[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 1,9(2): 90-93.
[16]
Fischer N, Klapoetke T M, Scheutzow S, et al.Hydrazinium 5-aminotetrazolate: an insensitive energetic material containing 83.72% nitrogen[J].Central European Journal of Energetic Materials, 8,5(3-4): 3-18.
[17]
Klapoetke T M, Sabate C M.5-Aminotetrazolium 5-aminotetrazolates-new insensitive nitrogen-rich materials[J].Z.Anorg.Allg.Chem., 9,5: 1812-1822.
[18]
Klapoetke T M, Sabate C M, Stierstorfer J.Neutral 5-nitrotetrazoles: easy initiation with low pollution[J].New J.Chem., 9,3: 136-147.
[19]
Klapoetke T M, Karaghiosoff K, Mayer P, et al.Synthesis and characterization of 1,4-dimethyl-5-aminotetrazolium 5-nitrotetrazolate[J].Propellants, Explosives, Pyrotechnics, 6,1(3): 188-195.
[20]
Klapoetke T M, Sabate C M, Rusan M.Synthesis, characterization and explosive properties of 1,3-dimethyl-5-amino-1H-tetrazolium 5-niteotetrazolate[J].Z.Anorg.Allg.Chem., 8,4: 688-695.
[21]
Klapoetke T M, Sabate C M, Welch J M.1,5-Diamino-4-methyltetrazolium 5-nitrotetrazolate - synthesis, testing and scale-up[J].Z.Anorg.Allg.Chem., 8,4: 857-866.
[22]
Sabate C M, Klapoetke T M, Rasp M.Pyrotechnics, propellants and explosives: bridged 5-nitrotetrazole derivatives[C]∥New Trends in Research of Energetic Materials, Czech Republic, 2009: 627-646.
[23]
Goebel M, Karaghiosoff K, Klapoetke T M.Nitrotetrazolate-2N-oxides and the strategy of N-oxide introduction[J].J.Am.Chem.Soc., 0,2(48): 17216-17226.
[24]
Klapoetke T M, Piercey D G, Stierstorfer J.The taming of CN7-: the azidotetrazolate 2-oxide anion[J].Chem.Eur.J., 1,7: 13068-13077.
[25]
Fischer N, Klapoetke T M, Stierstorfer J.Hydrazinium nitriminotetrazolates[J].Z.Anorg.Allg.Chem., 1,7: 1273-1276.
[26]
Fendt T, Fischer N, Klapoetke T M, et al.N-rich salts of 2-methyl-5-nitraminotetrazole: secondary explosives with low sensitivities[J].Inorg.Chem., 1,0: 1447-1458.
[27]
Joo Y H, Shreeve J M.Nitroimino-tetrazolates and oxy-nitroimino-tetrazolates[J].J.Am.Chem.Soc., 0,2: 15081-15090.
[28]
Klpoetke T M, Sabate C M.Nitrogen-rich tetrazolium azotetrazolate salts: a new family of insensitive energetic materials[J].Chem.Mater., 8,0: 1750-1763.
[29]
Klpoetke T M, Sabate C M.Bistetrazoles: nitrogen-rich, high performing, insensitive energetic compounds[J].Chem.Mater., 8,0: 3629-3637.
[30]
Klpoetke T M, Sabate C M.New energetic compounds based on the nitrogen-rich 5,5\'-azotetrazolate anion ([C2N10]2-)[J].New J.Chem., 9,3: 1605-1617.
[31]
Ronald A.Advanced Energetic Materials[M].Washington D C: National Academics Press, 2004.
[32]
Zhang Chao-yang.Computational investigation of the detonation properties of furazans and furoxans[J].Journal of Molecular Structure: Theochem, 6,5: 77-83
[33]
Wang Rui-hu, Guo Yong, Zeng Zhuo, et al.Furazan-functionalized tetrazolate-based salts: a new family of insensitive energetic materials[J].Chem.Eur.J., 9,5: 2625-2634.
[34]
范艳洁, 王伯周, 周彦水, 等.3,3′-二氰基-4,4′-偶氮呋咱(DCAF)合成及晶体结构[J].含能材料, 9,7(4): 385-388.FAN Yan-jie, WANG Bo-zhou, ZHOU Yan-shui, et al.Synthesis and crystal structure of 3,3′-dicyano-4,4′-azofurazan (DCAF) [J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 9,7(4): 385-388.