首页> 外文会议>33rd International Annual Conference of ICT, Jun 25-28, 2002, Karlsruhe >Novel Insensitive High Explosive Compounds Based on Heterocyclic Nuclei: Pyridines, Pyrimidines, Pyrazines and Their Benzo Analogues
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Novel Insensitive High Explosive Compounds Based on Heterocyclic Nuclei: Pyridines, Pyrimidines, Pyrazines and Their Benzo Analogues

机译:基于杂环核的新型不敏感高爆化合物:吡啶,嘧啶,吡嗪及其苯并类似物

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摘要

The rationale behind using heterocyclic compounds, particularly nitrogen heterocycles, as higher energy insensitive high explosives is discussed, including the potential advantages compared with carbocyclic compounds. The types of functional groups used to impart energy to heterocyclic nuclei, whilst maintaining insensitivity, and methodologies for their introduction, are covered. The latter include nitration (by conventional and clean synthetic methods), amination, and oxidation (on ring heteroatoms and of exocyclic amino groups). Strategies for maximising the energetic content of a given heterocyclic nucleus are also examined. The syntheses of specific examples at QinetiQ are described, based on the following nuclei: pyridine, pyrimidine, pyrazine, quinoxaline, quinazoline, pteridine and purine. Strategies for obtaining the desired amino-nitro derivatives and their heterocyclic N-oxides are outlined. Optimisation of the synthetic routes for several candidates is discussed. The physical, explosive and thermal properties of the more successful candidates are described, with suggestions for their potential application in military stores.
机译:讨论了使用杂环化合物(尤其是氮杂环化合物)作为对高能不敏感的高能炸药的背后原理,包括与碳环化合物相比的潜在优势。涵盖了用于在保持不敏感的同时为杂环核赋予能量的官能团类型,以及引入这些官能团的方法。后者包括硝化作用(通过常规和清洁的合成方法),胺化作用和氧化作用(在环杂原子和环外氨基上)。还研究了使给定杂环核的能量含量最大化的策略。基于以下核描述了QinetiQ上特定实例的合成:吡啶,嘧啶,吡嗪,喹喔啉,喹唑啉,蝶啶和嘌呤。概述了获得所需氨基-硝基衍生物及其杂环N-氧化物的策略。讨论了几种候选物的合成路线的优化。描述了较成功的候选人的物理,爆炸和热学性质,并提出了在军事商店中潜在应用的建议。

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