Preparation and crystallographic characterization of 1H-tetrazole/NaClO4 energetic cocrystal

Kazuki Inoue, S. Matsumoto, M. Kumasaki
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Abstract

Cocrystallization is a promising method for generating new energetic materials with improved performances. Herein, a novel energetic cocrystal composed of 1H-tetrazole/sodium perchlorate was prepared using the solvent evaporation method. This cocrystal is characterized as containing organic azole derivatives and an ionic perchlorate salt, which is used as an oxidizer in pyrotechnics. The crystal structure was determined via single-crystal X-ray diffraction. The as-prepared crystal exhibited a lamellar structure consisting of 1H-tetrazole and sodium perchlorate layers. A molecular structure comparison between the cocrystal and pristine ingredients revealed variations in the bond lengths and angles owing to the cocrystallization. The hydrogen bond formed by adjacent tetrazole rings was strengthened. The 1H-tetrazole/sodium perchlorate cocrystal was structurally compared with crystals previously reported to the Cambridge Structural Database including sodium perchlorate in lamellar structures. The lamellar structure of the cocrystal exhibited weak layer-to-layer interactions compared with those of the other crystals. Fourier transform infrared and Raman spectroscopy analyses were conducted, and the relationship between the spectroscopy results and the crystal/molecular structure are discussed. The results of the spectroscopic analyses exhibited peak shifts that indicate structural changes in bond lengths and angles owing to the cocrystallization.
1h -四氮唑/氯化钠高能共晶的制备及晶体学表征
共结晶是一种很有前途的制备新型高性能高能材料的方法。采用溶剂蒸发法制备了h -四唑/高氯酸钠的新型高能共晶。该共晶的特点是含有有机唑衍生物和离子高氯酸盐,高氯酸盐在烟火中用作氧化剂。通过单晶x射线衍射测定了晶体结构。制备的晶体呈现由h -四氮唑和高氯酸钠层组成的片层结构。通过对共晶和原始成分的分子结构比较,揭示了共晶导致的键长和键角的变化。相邻四唑环形成的氢键得到加强。将h -四氮唑/高氯酸钠共晶与剑桥结构数据库中先前报道的高氯酸钠片层结构晶体进行了结构比较。与其他晶体相比,该共晶的片层结构表现出较弱的层间相互作用。进行了傅里叶变换红外光谱和拉曼光谱分析,并讨论了光谱结果与晶体/分子结构的关系。光谱分析结果显示出峰移,表明由于共结晶导致键长和键角的结构变化。
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