Dalinger I L, Popova G P, Vatsadze I A, et al.Synthesis of 3,4,5-trinitropyrazole[J].Russ Chem Bul, 2009,58(10): 2185.
[2]
Dalinger I L, Vatsadze I A, Shkineva T K, et al.The specific reactivity of 3,4,5-trinitro-1H-pyrazole[J].Mendeleev Commun, 2010,20(5): 253-254.
[3]
Herve G, Roussel C, Graindorge H.Selective preparation of 3,4,5-trinitro-1H-pyrazole: A stable all-carbon-nitrated arene[J].Angew Chem Int Ed, 2010,49: 3177-3181.
[4]
Ravi P, Girish G M, Sikder A K, et al.Thermal decomposition kinetics of 1-Methyl-3,4,5-trinitropyrazole[J].Thermochimica Acta., 2012,528: 53-57.
[5]
Ravi P, Koti R C, Saikia A, et al.Nitrodeiodination of polyiodopyrazoles[J].Propellants Explosive Pyrotech, 2012,37: 167-171.
[6]
田新.3,4-二硝基吡唑合成及性能研究[D].北京:中国工程物理研究院.2012.TIAN Xin.Improved synthesis of 3,4-dinitropyrazole[D].Beijing: China Academy of Engineering Physic.2012.
[7]
田新, 李金山.3,4-二硝基吡唑热分解及非等温动力学[J].化学研究与应用, 2013,25(2): 206-209.TIAN Xin, LI Jin-shan.Thermal decomposition and non-isothermal kinetics of 3,4-dinitropyrazole[J].Chemical Research and Application, 2013,25(2): 206-209.
[8]
杜闪.3,4-二硝基吡唑的合成及其性能研究[D].太原:中北大学.2012.DU Shan.Synthesis and properties of 3,4-dinitropyrazole[D].Taiyuan: North University of China.2012.
[9]
李永祥, 曹端林, 王建龙.三种新型低熔点炸药的合成及表征[J].兵工学报, 2013,34(1): 36-40.LI Yong-xiang, CAO Duan-lin, WANG Jian-long.Synthesis and characterization studies on novel three explosives with low melting pointp[J].Journal of China Ordnance, 2013,34(1): 36-40.
[10]
杜闪, 李永祥, 王建龙, 等.3,4-二硝基吡唑合成方法及性能研究综述[J].化学研究, 2011,22(5): 106-110.DU Shan, LI Yong-xiang, WANG Jian-long, et al.Review for synthetic method and properties of 3,4-dinitropyrazole[J].Chemical Research, 2011,22(5): 106-110.
[11]
曹端林, 李雅津, 杜耀, 等.熔铸炸药载体的研究评述[J].含能材料, 2013,21(2): 157-165.CAO Duan-lin, LI Ya-jin, DU Yao, et al.ReviewonCarriers for Melt-cast Explosives[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2013,21(2): 157-165.
[12]
Lebedev V P, Matyushim Y N, Inolemtcev Y D.Thermochemical and explosive properties of nitropyrazoles[C]∥29th Fraunhofer-Institut fur Chemische Technologie, 1998,180.
[13]
安守忠.含氮有机化合物概论[M].北京: 科学出版社.1983.AN Shou-zhong.Overview of nitrogenous organic compounds[M].Beijing: Science press, 1983.
[14]
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 Shi-qing, YUE Shou-ti.The synthesis and characterization of azo tetrazole high nitrogen compounds[J].Chinese Journal of Explosives & Propellants, 2005,28(3): 52-54.
[15]
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.The research progress of nitrogen heterocyclic compounds[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2006,14(6): 475-484.
[16]
Boiani M, Gonzlez M.Imidazole and benzimidazole derivatives as chemotherapeutic agents[J].Mini Rev Med Chem, 2005,5(4): 409-424.
[17]
白雪, 周成合, 米佳丽.三唑类化合物研究与应用[J].化学研究与应用, 2007,19(7): 721-729.BAI Xue.ZHOU Cheng-he, MI Jia-li.Research and application of triazoles[J].Chemical Research and Apphcafion, 2007,19(7): 721-729.
[18]
Knlker H J, Reddy K R.Isolation and synthesis of biologically active carbazole alkaloids[J].Chem Rev, 2002,102(11): 4303-4427.
[19]
孔繁玲.硝基吡唑铜盐的合成与应用研究[J].兵工学报, 1996(2): 52.KONG Fan-ling.The synthesis and applied research of nitropyrazole copper salt[J].Acta Armamentarii, 1996(2): 52.
[20]
李翠屏, 孙天旭, 陈新志.3-硝基吡唑的合成[J].染料与染色, 2004,41(3): 168-169.LI Cui-ping, SUN Tian-xu, CHEN Xin-zhi.Synthesis of 3-nitropyrazole[J].Dyestuffs and Coloration, 2004,41(3): 168-169.
[21]
李洪丽, 熊彬, 姜俊, 等.3-硝基吡唑及其盐类的合成与表征[J].火炸药学报.2007,31(2): 102-108.LI Hong-li, XIONG Bin, JIANG Jun, et al.Synethsis and characterization of 3-nitropyrazole and its salts[J].Chinese Journal of Explosives & Propellants, 2007,31(2): 102-108.
[22]
Ravi P, Tewari S P.Facil and environmentally friendly synthesis of nitropyrazoles using montmorillonite K-10 impregnated with bismuth nitrate[J].Catalysis Communications, 2012,19: 37-41.
[23]
Ravi P, Tewari S P.Faujasite catalyzed nitrodeiodination of iodopyrazoles[J].Catalysis Communications, 2013,42: 35-39.
[24]
李雅津, 曹端林, 杜耀, 等.1-甲基-3,4,5-三硝基吡唑的合成与表征[J].火炸药学报.2013,36(3): 28-30.LI Ya-jin, CAO Duan-lin, DU Yao, et al.Synthesis and characterization of 1-methyl-3,4,5-trinitropyrazoles[J].Chinese Journal of Explosives & Propellants, 2013,36(3): 28-30.
[25]
LI Ya-jin, LI Yong-xiang, WANG Yan-hong, et al.Theoretical calculation of the detonation parameters of nitropyrazoles explosives[J].Advanced Materials Research, 2014,853: 395-400.
[26]
仪建红, 胡双启, 刘胜楠, 等.硝基吡唑类衍生物的结构和爆轰性能的理论研究[J].含能材料, 2010,18(3): 252-256.YI Jian-hong, HU Shuang-qi, LIU Sheng-nan, et al.Theoretical study on structures and detonation performances for nitro derivatives of pyrazole by density functional theory[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2010,18(3): 252-256.
[27]
Janssen J, Habrake C L.Pyrazoles.VIII.Rearrangement of N-nitropyrazoles.The formation of 3-nitropyrazole[J].J Org Chem, 1971,21(36): 3081-3084.
[28]
Kanishchev M I, Korneeva N V, Shevelev S A, et al.Nitropyrazoles(Review)[M].Plenum Publishing Corporation, 1988,4: 435-453.
[29]
Rao E N, Ravi P, Tewari S P.Experimental and theoretical studies on the structure and vibrational properties of nitropyrazoles[J].Journal of Molecular Structure, 2013(1043): 121-131.
[30]
Jadhav H S, Talawar M B, Sivabalan B, et al.Synthesis, characterization and thermolysis studies on new derivatives of 2,4,5-trinitroimidazoles: Potential insensitive high energy materials[J].Journal of Hazardous Materials, 2007,143: 192-197.
[31]
汪营磊, 姬月萍, 陈斌, 等.3,4-二硝基吡唑合成与性能研究[J], 含能材料, 2011,19(4): 377-379.WANG Ying-lei, JI Yue-ping, CHEN Bin, et al.Improved synthesis of 3,4-dinitropyrazole[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2011,19(4): 377-379.
[32]
蒋秋黎, 王浩, 罗一鸣, 等.3,4-二硝基吡唑的热行为及其与某些炸药组分的相容性[J].含能材料, 2013,21(3): 297-300.JIANG Qiu-li, WANG Hao, LUO Yi-ming, et al.Thermal behaviors of 3,4-dinitrophyrazoIe and its compatibility with some explosive component materials[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2013,21(3): 297-300.
[33]
Janssen J, Koeners H J, Kruse C G, et al.Pyrazoles.XII.The preparation of 3(5)-nitropyrazoles by thermal rearrangement of N-nitropyrazoles[J].J Org Chem, 1973,38(10): 1777-1782.
[34]
汪营磊, 张志忠, 王伯周, 等.3,5-二硝基吡唑合成研究[J].含能材料, 2007,15(6): 574-576.WANG Ying-lei, ZHANG Zhi-zhong, WANG Bo-zhou, et al.Synthesis of 3,5-Dinitropyrazole[J].Chinese Journal of Energetic Materials(Hanneng Cailiao), 2007,15(6): 574-576.
[35]
成健.不同硝化体系中3,5-二硝基吡唑的合成[D].南京: 南京理工大学, 2007.CHEN Jian.Synthesis of 3,5-Dinitropyrazole under different nitrification system[D].Nanjing: Nanjing University of Science and Technology.2007.
[36]
Katritzky A R, Scriven E F V, Majumder S, et al.Direct nitration of five membered heterocycles[J].ARKIVOC, 2005 (iii): 179-191.
[37]
Katritzky A R, Physical methods in heterocyelic chemistry [M].New York: Academic Press, 1974.
[38]
李永祥, 曹端林, 王建龙, 等.一种1-甲基-3,4-二硝基吡唑的制备方法: CN103467381A[P], 2013.LI Yong-xiang, CAO Duan-lin, WANG Jian-long, et al.A preparation method of 1-methyl-3,4-dinitropyrazole: CN103467381A[P], 2013.
[39]
Zaitsev A A, Dalinger I L.Dinitropyrazoles[J].Russion Chemical Reviews, 2009,78(7): 589-627.
[40]
Dalinger I L, Shevelev S, Korolev V, et al.Chemistry and thermal decomposition of trinitropyrazoles[J].J Therm Anal Calorim, 2011,105:509-516.