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高能四唑与三唑的组合:作为推进剂和气体发生器具有卓越稳定性和低机械敏感性的有前景材料。

Combination of Energetic Tetrazole and Triazole: Promising Materials with Exceptional Stability and Low Mechanical Sensitivity as Propellants and Gas Generators.

作者信息

Liu Yaxin, Lv Meifang, Zhang Guofeng, Dong Zhen, Ye Zhiwen

机构信息

School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Xiaolingwei 200, Nanjing 210094, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 29;15(12):15311-15320. doi: 10.1021/acsami.2c20871. Epub 2023 Mar 16.

DOI:10.1021/acsami.2c20871
PMID:36926825
Abstract

An innovative synthesis of 5-((1-tetrazol-5-yl)methyl)-4-1,2,4-triazole-3,4-diamine (TMT) based on triazole and tetrazole frameworks bearing double amino groups was reported. It is worth mentioning that TMT is insensitive to impact and friction (IS > 40 J, FS > 360 N), thus enabling it to have an exceptional thermal decomposition behavior that is superior to RDX and TNT. Meanwhile, it also has relatively high energetic performance ( = 8.417 km/s). A series of energy-containing salts TMT-1-8 were also investigated for their potential applications. Except for TMT-4 and TMT-7, the remaining nitrogen-rich salts have initial decomposition temperatures above 200 °C. Furthermore, the salts with positive heat generation all have extraordinary gas production, especially for TMT-1 ( = 840.5 dm/kg), TMT-2 ( = 803.9 dm/kg), and TMT-7 ( = 844.3 dm/kg). The low mechanical sensitivities of the TMT series were discovered, and a majority of them have impact sensitivities exceeding 40 J with friction sensitivities exceeding 360 N which are superior to TNT (IS = 15 J, FS = 353 N). The intermolecular and intramolecular interactions of the crystals TMT-1-3 were explored by Hirshfeld surfaces, 2D fingerprint plots, noncovalent interaction (NCI) analysis, and electrostatic potential surface analysis to understand the physicochemical property changes in relation to the structure. Consequently, this novel tri/tetrazole and polyamine system as a promising material provides the impetus for the development of gas generators and propellants.

摘要

报道了一种基于带有双氨基的三唑和四唑骨架的5-((1-四唑-5-基)甲基)-4-1,2,4-三唑-3,4-二胺(TMT)的创新合成方法。值得一提的是,TMT对冲击和摩擦不敏感(IS>40 J,FS>360 N),因此使其具有优于RDX和TNT的特殊热分解行为。同时,它还具有相对较高的能量性能( = 8.417 km/s)。还研究了一系列含能盐TMT-1-8的潜在应用。除TMT-4和TMT-7外,其余富氮盐的初始分解温度均高于200℃。此外,产热为正的盐均具有优异的产气性能,尤其是TMT-1( = 840.5 dm/kg)、TMT-2( = 803.9 dm/kg)和TMT-7( = 844.3 dm/kg)。发现了TMT系列的低机械感度,它们中的大多数冲击感度超过40 J,摩擦感度超过360 N,优于TNT(IS = 15 J,FS = 353 N)。通过Hirshfeld表面、二维指纹图谱、非共价相互作用(NCI)分析和静电势表面分析,探索了晶体TMT-1-3的分子间和分子内相互作用,以了解与结构相关的物理化学性质变化。因此,这种新型的三唑/四唑和多胺体系作为一种有前途的材料,为气体发生器和推进剂的发展提供了动力。

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