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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >High-Pressure Structural Response of an Insensitive Energetic Crystal: Dihydroxylammonium 5,5 '-Bistetrazole-1,1 '-diolate (TKX-50)
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High-Pressure Structural Response of an Insensitive Energetic Crystal: Dihydroxylammonium 5,5 '-Bistetrazole-1,1 '-diolate (TKX-50)

机译:不敏感能量晶体的高压结构响应:二羟基铵5,5' - 中 - 一唑-1,1' - 二醇(TKX-50)

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摘要

The structural response of a novel, insensitive energetic crystal-dihydroxylammonium 5,5'-bistetrazole-1,1'-diolate (TKX-50) was examined under high pressure. Using synchrotron single-crystal X-ray diffraction measurements, details of molecular, intermolecular, and crystal changes were determined to similar to 10 GPa to understand its structural stability. The experimental results showed that TKX-50 exhibits highly anisotropic compression and significantly lower volume compressibility than currently known energetic crystals. These results are found to be in general agreement with our previous predictions from the DFT calculations. Additionally, the experimental data revealed anomalous compression-an expansion of the unit cell along the a axis (negative linear compressibility, NLC) upon compression to similar to 3 GPa. The structural analyses demonstrated that this unusual effect, the first such observation in an energetic crystal, is a consequence of the highly anisotropic response of 3D motifs, comprised of two parallel anions [(C2N8O2)(2-)] linked with two cations [(NH3OH)] through four strong hydrogen bonds. The present results demonstrate that the structural stability of TKX-50 is controlled by the strong and highly anisotropic intermolecular interactions, and these may contribute to its shock insensitivity.
机译:在高压下检查新颖的,不敏感的能量晶体 - 二羟基铵5,5'-双四唑-1,1'-二醇(TKX-50)的结构响应。使用同步单晶X射线衍射测量,确定分子,分子间和晶体变化的细节以类似于10GPa以了解其结构稳定性。实验结果表明,TKX-50表现出高度各向异性的压缩,并且比目前已知的能量晶体显着降低体积压缩性。发现这些结果与我们以前的DFT计算预测一般同意。另外,实验数据揭示了异常压缩 - 在压缩到类似于3GPa时沿着轴(负线性压缩性,NLC)沿着轴(负线性压缩性,NLC)扩展。结构分析证明这种异常效果是高能晶体中的第一种这种观察,这是3D基序的高度各向异性响应的结果,其包括与两个阳离子相关的两个平行阴离子[(C2N8O2)(2-)] [( NH3OH)]通过四个强氢键。本结果表明,TKX-50的结构稳定性由强大且极均匀的分子间相互作用控制,这些结果可能导致其休克不敏感性。

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