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γ-环三亚甲基三硝胺的高温高压分解。

High pressure-high temperature decomposition of γ-cyclotrimethylene trinitramine.

机构信息

Institute for Shock Physics and Department of Physics, Washington State University, Pullman, Washington 99164-2816, USA.

出版信息

J Phys Chem A. 2012 Oct 4;116(39):9680-8. doi: 10.1021/jp307373v. Epub 2012 Sep 19.

Abstract

Decomposition of γ-cyclotrimethylene trinitramine (γ-RDX) under high pressure-high temperature conditions was examined to elucidate the reactive behavior of RDX crystals. Vibrational spectroscopy measurements were obtained for single crystals in a diamond anvil cell (DAC) at pressures from 6 to 12 GPa and temperatures up to 600 K. Global decomposition rates, activation energies, and activation volumes at several pressures and temperatures below the P-T locus for the γ-RDX decomposition were obtained. Similar to ε-RDX, but in contrast to α-RDX, we found that pressure decelerates the decomposition of γ-RDX. The decomposition deceleration with pressure in the γ-phase can be attributed to pressure-inhibiting bond homolysis step(s). The main decomposition species were identified as N(2)O, CO(2), and H(2)O, in accord with the species reported for the α-phase decomposition at high pressures. This work complements previous studies on RDX at HP-HT conditions and provides comprehensive results on the reactive behavior of γ-RDX; the γ-phase plays a key role in RDX decomposition at P-T conditions relevant to shock wave initiation.

摘要

在高温高压条件下对γ-环三亚甲基三硝胺(γ-RDX)的分解进行了研究,以阐明 RDX 晶体的反应行为。在金刚石压腔(DAC)中对单晶进行了振动光谱测量,压力范围为 6 至 12 GPa,温度高达 600 K。在γ-RDX 分解的 P-T 轨迹以下的几个压力和温度下,获得了整体分解速率、活化能和活化体积。与 ε-RDX 相似,但与 α-RDX 相反,我们发现压力会减缓 γ-RDX 的分解。γ 相中的压力对分解的减速可以归因于抑制键均裂步骤的压力。主要的分解产物被确定为 N(2)O、CO(2)和 H(2)O,与高压下 α 相分解报告的产物一致。这项工作补充了先前在 HP-HT 条件下对 RDX 的研究,并提供了有关 γ-RDX 反应行为的综合结果;在与冲击波引发相关的 P-T 条件下,γ 相在 RDX 分解中起着关键作用。

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