[1]AXENROD T, WATNICK C, YAZDEKHASTI H, et al. Synthesis of 1,3,3-trinitroazetidine via the oxidative nitrolysis of
N
-
p
-tosyl-3-azetidinone oxime [J]. The Journal of Organic Chemistry, 1995, 60(7): 1959-1964.
[2]MARCHAND A P, RAJAGOPAL D, BOTT S G, et al. A novel approach to the synthesis of 1,3,3-trinitroazetidine [J]. The Journal of Organic Chemistry, 1995, 60(15): 4943-4946.
[3]范敏. 1,3,3-三硝基氮杂环丁烷研究进展[J]. 化学推进剂与高分子材料, 2003, 1(4): 24-28.
FAN M. Research progress of 1,3,3trinitroazetidine [J]. Chemical Propellant & Polymeric Materials, 2003, 1(4): 24-28.
[4]丁黎, 李英勃. 1,3,3-三硝基氮杂环丁烷的合成方法及性能研究[J]. 火炸药学报, 2002, 25(4): 42-44, 65.
DING L, LI Y B. Novel development of syntheses and properties of 1,3,3-trinitroazetidine (TNAZ) [J]. Chinese Journal of Explosives & Propellants, 2002, 25(4): 42-44, 65.
[5]李吉祯,樊学忠,王伯周. 1,3,3-三硝基氮杂环丁烷的性能及应用研究进展[J]. 含能材料, 2004, 12(5): 305-308.
LI J Z, FAN X Z, WANG B Z. Review on the properties and applications of 1,3,3-trinitroazetidine [J]. Energetic Materials, 2004, 12(5): 305-308.
[6]王伯周,朱春华, 龙秋和. 1,3,3-三硝基氮杂环丁烷的合成及性能初步研究[J]. 含能材料, 1995, 3(1): 7-9.
WANG B Z, ZHU C H, LONG Q H. A preliminary study on synthesis and properties of 1,3,3-trinitroazetidine [J]. Energetic Materials, 1995, 3(1): 7-9.
[7]MA Y, ZHANG A B, XUE X G, et al. Crystal packing of impact-sensitive high-energy explosives [J]. Crystal Growth & Design, 2014, 14(11): 6101-6114.
[8]舒远杰, 李洪珍, 黄奕刚, 等. 1,3,3-三硝基氮杂环丁烷的合成[J]. 有机化学, 2003, 23(10): 1139-1141.
SHU Y J, LI H Z, HUANG Y G, et al. Synthesis of 1,3,3-trinitroazetideine [J]. Chinese Journal of Organic Chemistry, 2003, 23(10): 1139-1141.
[9]毕卫宇, 刘愆, 张志忠, 等. TNAZ的硝基甲烷法合成研究[J]. 火炸药学报, 2002, 25(4): 31-32.
BI W Y, LIU Q, ZHANG Z Z, et al. Synthesis of TNAZ via nitromethane [J].Chinese Journal of Explosives & Propellants, 2002, 25(4): 31-32.
[10]FAN X Z, LI J Z, ZHANG Y J, et al. Characteristics of the smokeless CMDB propellants with l,3,3-trinitroazetidine [J].Chinese Journal of Explosives & Propellants, 2005, 28(4): 35-40.
樊学忠, 李吉祯, 张亚俊, 等. 1,3,3-三硝基氮杂环丁烷作为增塑剂的无烟CMDB推进剂综合性能研究[J]. 火炸药学报, 2005, 28(4): 35-40.
[11]LI J Z, ZHANG W, WANG B Z, et al.Studies on the combustion characteristics and the thermal behavior of CMDB and NEPE propellants with l,3,3-trinitroazetidine [J]. Chinese Journal of Explosives & Propellants, 2005, 28(2): 16-20, 38.
李吉祯, 张伟, 王伯周, 等. 含1,3,3-三硝基氮杂环丁烷CMDB和NEPE推进剂的燃烧性能和热行为[J]. 火炸药学报,2005, 28(2): 16-20, 38.
[12]DUBOVIS M V, RUDAKOV G F, KULAGIN A S, et al. A new method of synthesis of substituted 1(1H-imidazole-4-yl)-1H-1,2,3-triazoles and their fungicidal activity [J]. Tetrahedron, 2018, 74(6): 672-683.
[13]OGIBIN YU N, ILOVAISKY A I, MERKULOVA V M, et al. Electrochemical synthesis of geminal azidonitro compounds [J]. Russian Chemical Bulletin, 2004, 53(11): 2558-2563.?
[14]KATOROV D V, RUDAKOV G F, ZHILIN V F. Synthesis of heterocyclic geminal nitro azides [J]. Russian Chemical Bulletin, 2009, 58(11): 2311-2317.
[15]KATOROV D V, RUDAKOV G F, LADONIN A V, et al. Preparation of low-melting compositions based on 1,3,3-trinitroazetideine [J]. Central European Journal of Energetic Materials, 2007, 4(1/2): 125-133.
[16]JIA S Y, ZHANG H H, ZHANG J R, et al. A melt-cast explosive 3-azido-1,3-dinitroazetidine (AzDNAZ) with gem-azidonitro of novel energetic group: synthesis and performance[J]. Chinese Journal of Energetic Materials, 2020, 28(7): 685-689.
贾思媛, 张海昊, 张家荣, 等. 新型含能基团偕氮硝基熔铸炸药载体AzDNAZ的合成及性能[J]. 含能材料, 2020, 28(7): 685-689.
[17]ZHENG M, ZHAO F Q, XU S Y, et al. A simple relationship of bond dissociation energy and average charge separation to impact sensitivity for nitro explosives [J]. Journal of the Serbian Chemical Society, 2019, 84(1): 27-40.
[18]POLITZER P, MURRAY J S, GRICE M E, et al. Calculation of heats of sublimation and solid phase heats of formation [J]. Molecular Physics, 1997, 91(5): 923-928.
[19]SUCESKA M. Evaluation of detonation energy from EXPLO5 computer code results [J]. Propellants, Explosives, Pyrotechnics, 1999, 24(5): 280-285.