含能材料
含能材料
함능재료
ENERGETIC MATERIALS
2014年
6期
872-879
,共8页
郭俊玲%曹端林%王建龙%王艳红%乔瑞%李永祥
郭俊玲%曹耑林%王建龍%王豔紅%喬瑞%李永祥
곽준령%조단림%왕건룡%왕염홍%교서%리영상
有机化学%硝基吡唑%合成%含能材料%综述
有機化學%硝基吡唑%閤成%含能材料%綜述
유궤화학%초기필서%합성%함능재료%종술
organic chemistry%nitropyrazoles%synthesis%energetic materials%review
综述了12种硝基吡唑化合物的合成方法并进行了比较,重点介绍了能量高于2,4,6-三硝基甲苯( TNT)、感度低于 TNT或能量更高的吡唑类低熔点系列含能化合物,如3,4-二硝基吡唑(3,4-DNP)、1-甲基-3,4,5-三硝基吡唑( MTNP),为此类含能化合物的进一步合成及性能研究提供一定的参考,为高密度、高能量、低感度炸药及可替代 TNT 的熔铸炸药载体的进一步研究探索提供一定的新思路。认为以下三个方面将会是今后一段时期内的研究重点:探索 MTNP新合成路及工艺优化,研究3,4-二硝基吡唑和 MTNP的物化性能及其高能化合物的组合配方,寻找硝基吡唑化合物合成中需求的绿色硝化剂和催化剂。
綜述瞭12種硝基吡唑化閤物的閤成方法併進行瞭比較,重點介紹瞭能量高于2,4,6-三硝基甲苯( TNT)、感度低于 TNT或能量更高的吡唑類低鎔點繫列含能化閤物,如3,4-二硝基吡唑(3,4-DNP)、1-甲基-3,4,5-三硝基吡唑( MTNP),為此類含能化閤物的進一步閤成及性能研究提供一定的參攷,為高密度、高能量、低感度炸藥及可替代 TNT 的鎔鑄炸藥載體的進一步研究探索提供一定的新思路。認為以下三箇方麵將會是今後一段時期內的研究重點:探索 MTNP新閤成路及工藝優化,研究3,4-二硝基吡唑和 MTNP的物化性能及其高能化閤物的組閤配方,尋找硝基吡唑化閤物閤成中需求的綠色硝化劑和催化劑。
종술료12충초기필서화합물적합성방법병진행료비교,중점개소료능량고우2,4,6-삼초기갑분( TNT)、감도저우 TNT혹능량경고적필서류저용점계렬함능화합물,여3,4-이초기필서(3,4-DNP)、1-갑기-3,4,5-삼초기필서( MTNP),위차류함능화합물적진일보합성급성능연구제공일정적삼고,위고밀도、고능량、저감도작약급가체대 TNT 적용주작약재체적진일보연구탐색제공일정적신사로。인위이하삼개방면장회시금후일단시기내적연구중점:탐색 MTNP신합성로급공예우화,연구3,4-이초기필서화 MTNP적물화성능급기고능화합물적조합배방,심조초기필서화합물합성중수구적록색초화제화최화제。
Pyrazole and its derivatives are a kind of important nitrogen heterocyclic compounds,and have extensive application in many fields. Based on the reference literatures at home and abroad,this paper summarizes and compares the synthesis methods of 12 kinds of nitropyrazole compounds. Mainly,the research of such pyrazole series of low melting point compounds as 3,4-dinitro pyrazole(DNP)and 1-methyl-3,4,5-trinitropyrazole(MTNP),whose energy is higher than that of 2,4,6-trinitortoluence ( TNT),and sensitivity is lower than that of TNT,is introduced. It could provide the basis for studying the further synthesis and performance of such energy materials. Their development is prospected,which could provide some new ideas for the further study of explosives with high density,high energy and low sensitivity,and of melt-cast explosive carriers which could take the place of TNT. These three aspects will be the research emphasis for a period in the future:explore the new synthetic route and process op-timization of MTNP,study the physicochemical properties and the combination formulations with high energy compounds of the 3,4-DNP and MTNP,seek green nitration agents and catalyst needed in the synthesis of the nitro pyrazole compounds.