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Evaluation of a CL-20/TATB Energetic Co-crystal

机译:评估CL-20 / TATB精力充沛的共晶

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Exploration of novel energetic-energetic co-crystals has greatly increased in recent years as the need for energetic materials with improved detonation performance and reduced sensitivity continues to grow. In 2015 a CL-20/TATB co-crystal was reported and touted sensitivity and detonation properties that would make it a potential replacement for the industry standard HMX. The confirmation, reproducibility, and characterization of energetic materials are still a widely debated topic especially when the material of interest has exceptional properties. In this work, CL-20/TATB co-crystals are attempted via solvent-nonsolvent (S/NS) cocrystallization to assess the formation of a true co-crystal. The prepared crystals were characterized via scanning electron microscopy (SEM), powder x-ray diffraction (PXRD), fourier transform infrared spectroscopy (FTIR), raman spectroscopy, thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC). This work reproduced S/NS cocrystallization similar to that reported in 2015, provides a solubility and thermodynamic explanation behind CL-20/TATB cocrystallization, and assesses the future viability of CL-20/TATB crystals.
机译:近年来,新颖的精力充沛的合作晶体的探索大大增加,随着具有改善的爆轰性能和降低的敏感性,持续增长的能量材料的需求大大增加。 2015年,报告了CL-20 / TATB共晶,并吹捧了敏感性和爆轰性能,使其成为行业标准HMX的潜在替代品。能量材料的确认,再现性和表征仍然是一个广泛争论的话题,特别是当感兴趣的材料具有出色的特性时。在这项工作中,通过溶剂 - 非溶剂(S / NS)COCryalization尝试Cl-20 / TATB共晶以评估真正共晶的形成。通过扫描电子显微镜(SEM),粉末X射线衍射(PXRD),傅里叶变换红外光谱(FTIR),拉曼光谱,热重分析(TGA)以及差示扫描量热法(DSC)进行表征制备的晶体。这项工作再现类似于2015年报告的S / NS COCRYSTALLIZ化,提供了CL-20 / TATB COCRYSTALLIZATION后面的溶解度和热力学解释,并评估了CL-20 / TATB晶体的未来存活率。

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