李来才, 蔡皖飞, 张姝.多氮含能材料的研究概述[J].四川师范大学学报, 2011,34(5): 729-739.LI Lai-cai, CAI Yuan-fei, ZHANG Shu.Review on Poly-Nitrogen Energetic Materials[J].Journal of Sichuan Normal University, 2011,34(5): 729-739.
[2]
周小清, 马卿, 张晓玉, 等.5,5′-肼基-双四唑的合成与性能[J].含能材料, 2011(3): 361-362.ZHOU Xiao-qing, MA Qing, ZHANG Xiao-yu, et al.Synthesis and Properties of 5,5′-hydrazine-bitetrazole[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2011(3): 361-362.
[3]
阳世清, 徐松林, 雷永鹏.氮杂环含能化合物的研究进展[J].含能材料, 2006,14(6): 475-484.YANG Shi-qing, XU Song-lin, LEI Yong-peng.Synthesis and Characterization of High-Nitrogen Energetic Compounds Derived from Azotetrazolate[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2006,14(6): 475-484.
[4]
Vinogradov V, Dalinger I, Shevelev S.N-Amination of pyrazoles: a general approach[J].Mendeleev Commun, 1993,3(3): 111.
[5]
Schmidt R D, Lee G S, Pagoria P F, et al.Synthesis and properties of a new explosive 4-amino-3,5-dinitro-1H-pyrazole (LLM-116)[R].Report UCRL-ID-148510,2001.
[6]
Mendenhall I V, Lund G K.Gas generating compositions having glass fibers[P].US:0116384,2010.
Khandhadia P S, Burns S P.Thermally stable nonazide automotive airbag propellants[P].US:6306232,2001.
[9]
Hyunh M, Hiskey M, Ernest L, et al.Polyazido high-nitrogen compounds: hydrazo-and azo-1,3,5-trizine[J].Angew Chem Int Ed, 2004,43(37): 4924-4928.
[10]
周阳, 龙新平, 王欣, 等.高氮含能化合物的研究新进展[J].含能材料, 2006,14(4): 315-320.ZHOU Yang, LONG Xin-ping, WANG Xin, et al.Review on High-Nitrogen Energetic materials[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2006,14(4): 315-320.
[11]
Hans-Heinrich Licht, Helmut Ritter.New energetic materials from triazoles and tetrazine[J].Energetic Materials,1994,12: 223-235.
[12]
Hiskey M A, Chavez D, Naud D L.Insensitive high-nitrogen compounds[J].NTIS, No: DE-2001-776133,2001.
[13]
Huynh M H V, Hiskey M A, Chavez D E, et al.Synthesis, characterization, and energetic properties of diazido heteroaromatic high-nitrogen CN compound[J].Journal of the American Chemical Society, 2005,127(36): 12537-12543.
[14]
阳世清, 徐松林.3,6-二氨基-1,2,4,5-四嗪-1,4-二氧化物的合成与表征[J].含能材料, 2005,13(6): 362-364.YANG Shi-qing, XU Song-lin.Synthesis and Characterization of 3,6-Diamino-1,2,4,5-tetrazine-1,4-dioxide[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2005,13(6): 362-364.
[15]
潘劼, 何金选, 陶永杰.3,6-二肼基-1,2,4,5-四嗪及其盐的合成与表征[J].含能材料, 2006,14(2): 116-117.PAN Jie, HE Jin-xuan, TAO Yong-jie.Synthesis and Characterization of 3,6-Dihydrazine-1,2,4,5-tetrazine and its Energetic Salts[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2006,14(2): 116-117.
[16]
何冬梅, 程广斌, 吕春绪.四嗪类高氮含能化合物的合成与表征[J].火炸药学报, 2010,33(5): 8-11.HE Dong-mei, CHENG Guang-bin, LV Chun-xu.Synthesis and Characterization of High-nitrogen Energetic Compounds Derived from Tetrazine[J].Chinese Journal of Explosives & Propellants, 2010,33(5): 8-11.
[17]
Hiskey M A, Chavez D E, Naud D.Preparation of 3,3′-azobis (6-amino-1,2, 4,5-tetrazine), US: 6342589[P], 2002.
[18]
徐松林, 阳世清, 张炜, 等.3,3′-偶氮-(6-氨基-1,2,4,5-四嗪)的合成及性能研究[J].化学通报, 2006(9): 685-689.XU Song-lin, YANG Shi-qing, ZHANG Wei, et al.Study on the Synthesis and Performance of 3,3′-Azobis(6-amino-1,2,4,5-tetrazine)[J].Chemistry, 2006(9): 685-689.
[19]
岳守体, 阳世清.3,6-双(1-氢-1,2,3,4-四唑-5-氨基)-1,2,4,5-四嗪的合成及其性能[J].含能材料, 2004,12(3), 155-157.YUE Shou-ti, YANG Shi-qing.Synthesis and Properties of 3,6-bis(1H-1,2,3,4-tetrazol-5-yl-amino)-1,2,4,5-tetrazine[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2004,12(3): 155-157.
[20]
Chavez D , Hiskey M.1,2,4,5-Tetrazine based energetic materials[J].Journal of Energetic Materials, 1999,17: 357-377.
[21]
David E, Chavez D, Hiskey M.3,3′-Azobis( 6-amino-1,2,4,5-tetrazine): A novel high nitrogen energetic material[J].Angew Chem Int Ed, 2000,39(10): 1791-1793.
[22]
Nielsen A T, Chan M L, Kraeutle C K.Polynitro-polyazacaged explosives, Part 7, NWC TP7200[R].China Lake: Navel Weapons Center, 1989.
[23]
王昕, 彭翠枝.国外六硝基六氮杂异伍兹烷的发展现状[J].火炸药学报, 2007,30(5): 45-48.WANG Xin, PENG Cui-zhi.Development of Hexanitrohexaazaisowurtzitane at abroad[J].Chinese Journal of Explosives & Propellants, 2007,30(5): 45-48.
[24]
王才, 欧育湘, 陈博仁.六硝基六氮杂异伍兹烷的一锅合成[J].北京理工大学学报, 2000,20(4): 521-523.WANG Cai, OU Yu-xiang, CHEN Bo-ren.One-pot Synthesis of Hexanitrohexaazaisowurtzitane[J].Journal of Beijing Institute of Technology, 2000,20(4): 521-523.
[25]
Daoud Sami.Dual-stage gas generator utilizing eco-friendly gas generant formulation, US: 6877435[P], 2005.
[26]
Blomquist, Harold R.Monopropellant smokeless gas generant materials[P].US 6513834,2003.
[27]
张盛榜.气体发生剂浅谈[J].火炸药,1980,5(7): 43-46.
[28]
王宏社, 杜志明.烟火型气体发生剂研究进展[J].含能材料,2004,12(6): 376-380.WANG Hong-du, DU Zhi-ming.Progress in Gas Generating Pyrotechnic Composition[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2004,12(6): 376-380.
[29]
钟梅.瓜果保险技术的研究与应用[D].乌鲁木齐: 新疆大学,2006.ZHONG Mei.Study and Application of the Techniques of Fruits preservation[D].Wulumuqi: Xinjiang University, 2006.
[30]
雷永鹏, 阳世清, 徐松林, 等.新型气体发生剂用非叠氮化合物可燃剂研究进展[J].化学推进剂与高分子材料, 2006,4(6): 20-24.LEI Yong-peng, YANG Shi-qing, XU Song-lin, et al.Research Progress of Non-Azide Fuel for New Gas Generant[J].Chemical Propellants & Polymeric Materials.2006,4(6): 20-24.
[31]
徐松林, 阳世清, 岳守体.偶氮四唑类高氮含能化合物的合成及表征[J].火炸药学报, 2005,28(3): 52-54.XU Song-lin, YANG Shin-qing, YUE Shou-ti.Synthesis and Characterization of High-Nitrogen Energetic Compounds Derived from Azotetrazolate[J].Chinese Journal of Explosives & Propellants, 2005,28(3): 52-54.
[32]
Fowler M S, Benziger T M, Cady H H, et al.Castable ideal composite explosives containing ammounium nitrate[R].Los Alamos Scientific Laboratory Report:LA-7398-MS.1978.
[33]
Pevzner M S, Kulibabina T N, Povarova N A, et al.Nitration of 5-amino-1,2,4-triazole and 5-acetamino-1,2,4-triazole by acetylinitrate and nitronium salt[J].Khimiya Geterotsiklicheskikh Soedinenii, 1979 (8): 1132-1135.
[34]
朱朝阳, 曹一林, 孙忠祥, 等.5,5′-二硝基-3,3′-偶氮基-1-氢-1,2,4-三唑(DNAT)的合成和性能研究[J].固体火箭技术, 2008,31(5): 501-503.ZHU Chao-yang, CAO Yi-lin, SUN Zhong-xiang, et al.Investigation on synthesis and properties of 5,5′-dinitro-3,3′-azo-1-hydro-1,2,4-triazole(DNAT)[J].Journal of Solid Rocket Technology, 2008,31(5): 501-503.
[35]
李加荣.3-硝基-1,2,4-三唑酮-5盐的研究概述[J].含能材料, 1999,7(1): 12-15.LI Jia-rong.A Review on 3-Nitro-1,2,4-Triazole-5-One Salts[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 1999,7(1): 12-15.
[36]
李芳, 杜志明.氨基四唑含能化合物研究进展[J].化工进展, 2011,30(11): 2481-2485.LI Fang,DU Zhi-ming.Progress in energetic aminotetrazole compounds[J].Chemical Industry and Engineering Progress.2011,30(11): 2481-2485.
[37]
Poole D R.Azaide-free gas generant composition with easily filterable combustion products[P].US: 5035757,1991.
[38]
Edwards W W, Lund G K, Shaw III G C, et al.Non-azide gas generant formulation, method, and apparatus[P].US:5197758,1993.
[39]
Murotani M, Mura H , Takeda M , et al.Process for producing 5-aminotetrazole[P].EP:669325,1994.
[40]
Himo F, Demko Z P, Noodleman L, et al.Why is tetrazole formation by addition of azide to organic nitriles catalyzed by zinc(II) salts[J].J Am Chem Soc, 2003,125(33): 9983-9987.
[41]
Himo F, Demko Z P, Noodleman L, et al.Mechanisms of tetrazole formation by addition of azide to nitriles[J].J Am Chem Soc, 2002,124(41): 12210-12216.
周小清,马卿,张晓玉,等.5,5′-肼基-双四唑的合成与性能[J].含能材料, 2011(3): 361-362.ZHOU Xiao-qing, MA Qing, ZHANG Xiao-yu, et al.Synthesis and Properties of 5,5′-hydrazine-bitetrazole[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2011(3): 361-362.
[44]
阳世清, 徐松林, 黄亨健, 等.高氮化合物及其含能材料[J].化学进展, 2008,20(4): 526-537.YANG Shi-qing, XU Song-lin, HUANG Heng-jian, et al.High Nitrogen Compounds and Their Energy Materials[J].Progress in Chemistry, 2008,20(4): 526-537.
[45]
Hammer A, Hiskey M, Holl G, et al.Azidoformamidinium and guanidinium 5,5 prime-azotetrazolate salts[J].Chemistry of Materials, 2005,17(14): 3784-3793.
[46]
徐松林, 阳世清.偶氮四唑非金属盐类含能材料的合成与性能研究[J].含能材料, 2006,14(5), 377-380.XU Song-lin, YANG Shi-qing.Synthesis and Properties of High-nitrogen Energetic Compounds Based on Azotetrazolate Nonmetallic Salts[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2006,14(5): 377-380.
[47]
汪营磊, 张志忠, 王伯周, 等.VNS反应合成LLM-116[J].火炸药学报, 2007,30(6): 20-23.WANG Ying-lei, ZHANG Zhi-zhong, WANG Bo-zhou, et al.Synthesis of LLM-116 by VNS Reaction[J].Chinese Journal of Explosives & Propellants, 2007,30(6): 20-23.
[48]
Barnes M W, Mendenhall Ivan V, Taylor R D.Alkail metal perchlorate-containing gas generants[P].US:0016529A1,2006.
[49]
Mendenhall I V, Smith R G.Micro-gas generation[P].US:0217894,2008.
[50]
关兵峰, 姚俊, 王小强.新能源汽车安全气囊用气体发生剂研究进展[J].化学推进剂与高分子材料, 2012,10(3): 17-22.GUAN Bing-feng,YAO Jun, WANG Xiao-qiang.Research Progress in Gas Generants for Airbag of New Energy Source Automobile[J].Chemical Propellants & Polymeric Materials, 2012,10(3): 17-22.
[51]
Mendenhal Ivan V,Taylor Robert D.Burn rate enhencemete via metal aminotetrazole hydroxides.US:20050098246[P],2005.
Jean P Picard.Process for preparation of triaminoguanidine anditssalts.US:3813439[P],1974.
[55]
Eugene F Rothgery.Process for producing triaminoguanidine nitrate and the high melting point product so produce.US:4800232[P],1989.
[56]
Daniel R Satrinan, Verona N J.Preparationoftriaminoguanidine compounds from dicyandiamide.US:3285958[P],1966.
[57]
Vernon E Haury, Simi Valley.Method of producing triaminoguanidinenitrate.US:3950421[P],1976.
[58]
Kerry L Wagaman, Chester F Clark.Method of producing triaminoguanidinenitrate.US:5041661[P],1991.
[59]
徐松林, 阳世清.三氨基硝酸胍的放大合成工艺及表征研究[J].化学推进剂与高分子材料, 2006,4(3): 33-35.XU Song-lin, YANG Shi-qing.Enlargement Synthesis Technology and Characterization of Triaminoguanidinium Nitrate[J].Chemical Propellants & Polymeric Materials, 2006,4(3): 33-35.
[60]
Neutz J, Grosshardt O, Schaufele S, et al.Synthesis, Characterization and Thermal Behaviour of Guanidinium-5-aminotetrazolate(GA)-A New Nitrogen-Rich Compound[J].Propellants, Explosives, Pyrotechnics, 2003,28(4): 181-188.
[61]
杨通辉, 何金选, 张海林.N-脒基脲二硝酰胺盐(FOX-12)的合成与表征[J].含能材料, 2004,12(1): 36-37.YANG Tong-hui, HE Jin-xuan, ZHANG Hai-lin.Synthesis and Characterization of FOX-12[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2004,12(1): 36-37.
[62]
黄清华.四嗪及其衍生物的合成[D].南京:南京理工大学2010.HUANG Qing-hua.Synthesis of tetrazine and its derivatives[D].Nanjing: Nanjing Institute of Technology, 2010.
[63]
薛金强, 尚丙坤, 王伟.四嗪类高氮分子及离子含能化合物的研究进展[J].化学推进剂与高分子材料, 2011,9(4): 91-98.XUE Jin-qiang, SHANG Bing-kun, WANG Wei.Research Situation and Development Trends of Degradable Polyurethane Materials[J].Chemical Propellants & Polymeric Materials, 2011,9(4): 91-98.
[64]
张海昊, 王伯周, 刘愆.2-硝亚胺基-5-硝基-六氢化-1,3,5-三嗪(NNHT)的合成[J].火炸药学报, 2007,30(6): 48-53.ZHANG Hai-hao, WANG Bo-zhou, LIU Qian.Synthesis of 2-Nitroinino-5-nitrohexahydro-1,3,5-triazine (NNHT)[J].Chinese Journal of Explosives & Propellants, 2007,30(6): 48-53.
[65]
Huang D S, Rindone R R.High energy insensitive cyclic nitramines[P].US:4937340,1990.
[66]
Cliff M D, Dagley I J, Parker R P.Synthesis of 2-nitroimino-5-nitro hexahydro-1,3,5-triazine[J].Propellants, Explosives, Pyrotechnics, 1998,23(3): 179-181.
[67]
李永祥, 王建龙, 王艳红, 等.一种合成2-硝亚胺基-5-硝基-六氢化-1,3,5-三嗪(NNHT)的新方法[J].有机化学, 2011,3 1(2): 256-259.LI Yong-xiang, WANG Jian-long, WANG Yan-hong, et al.A Novel Synthetic Method of 2-Nitroimino-5-nitro-hexahydro-1,3,5-triazine (NNHT)[J].Chinese Journal of Organic Chemistry, 2011,31(2): 256-259.
[68]
Daoud Sami.Dual-stage gas generator utilizing eco-friendly gas generant formulation for military applications: US 6918340[P], 2005.
[69]
雷永鹏, 阳世清, 徐松林, 等.钝感高能材料N-脒基脲二硝酰胺盐的研究进展[J].含能材料, 2007,15(3): 289-293.LEI Yong-peng, YANG Shi-qing, XU Song-lin, et al.Progress in Insensitive High Energetic Materials N-Guanylurea-dinitramide[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2007,15(3): 289-293.
[70]
Norman H, Lundstrom, Aaron J, et al.Pyrotechnic gas generant composition including high oxygen balance fuel, US: 6093269[P], 2000.
[71]
Wheatley, Brian K, Greso, et al.Gas generant compositions exhibiting low autoignition temperatures and methods of generating gases therefrom: US 6673172[P],2004.
[72]
李战雄, 唐松青.氧化呋咱衍生物的合成研究进展[J].含能材料, 2006,14(1): 77-79.LI Zhan-xiong, TANG Song-qing.Review on the Synthesis of Furoxan Derivatives[J].Chinese Journal of Energetic Materials(Hanneng Cailiao),2006,14(1): 77-79.
[73]
高莉, 杨红伟, 伍波, 等.五种呋咱衍生物的新法合成[J].含能材料, 2013,21(2): 226-229.GAO Li, YANG Hong-wei, Wu Bo, et al.New Synthetic Route of Five Furazan Derivatives[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2013,21(2): 226-229.
[74]
雷晴, 陶永杰, 何金选.偶氮呋咱和氧化偶氮呋咱的合成及表征[J].固体火箭技术, 2006,29(5): 354-357.LEI Qing, TAO Yong-jie, HE Jin-xuan.Synthesis and Characterization of Azofurazan and Azoxyfurazan[J].Journal of Solid Rocket Technology, 2006,29(5): 354-357.
Solodyuk G D, Boldyrev M D, Gidaspov B V, et al.Oxidation of 3,4-diaminofurazan by peroxide reagents[J].Zhurnal Organicheskoi Khimii, 1981,17(4): 861-865.
[77]
Hiskey M, Chavez D, Bishop R, et al.Use of 3,3′-diamino-4,4′-azoxyfurazan and 3,3′-diamino-4,4′-azofurazan as insensitive high explosive materials, US: 6358339[P], 2002.
[78]
吴敏杰, 陈树森, 金韶华, 等.一种合成3,3′-二氨基-4,4′-氧化偶氮呋咱的新方法[J].含能材料, 2013,21(2): 273-275.WU Min-jie, CHEN Shu-sen, JIN Shao-hua, et al.A New Method to Synthesize 3,3′-Diamino-4,4′- azoxyfurazan(DAOAF)[J].Chinese Journal of Energetic Materials(Hanneng Cailiao),2013,21(2): 273-275.