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THEORETICAL STUDT OF BTF/TNA COCRYSTAL: EFFECTS OF HYDROSTATIC PRESSURE AND TEMPERATURE

机译:BTF / TNA Cocrystal的理论研究:静压压力和温度的影响

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Cocrystallization is a promising technique for the design and preparation of new explosives, and the stability of cocrystal is highly concerned by the researchers. In order to make a better understanding of the behavior of cocrystal under the extreme conditions, DFT (density functional theory) calculation is performed to investigate the effect of hydrostatic pressure on geometrical and electronic structures of the cocrystal BTF (benzotrifuroxan)/TNA (2,4,6-trinitroaniline). When the hydrostatic pressure is applied, the lattice constants, volume, density and total energy change gradually except at the pressures of 40 GPa and 79-83 GPa. It is noteworthy that new chemical bonds form when the pressure is up to 83 GPa. The band gap of the cocrystal becomes smaller when the pressure is applied, and finally the cocrystal shows a characteristic of metal. The mechanical property of cocrystal is calculated by MD (molecular dynamics) simulation. The results show that the cocrystal has a better ductibility at low temperature, and has the best tenacity at 295 K.
机译:COCRYSTALLIZATION是一种有希望的设计和制备新炸药的技术,并且COCrystal的稳定性受到研究人员的高度关注。为了在极端条件下更好地理解COCrystal的行为,进行DFT(密度函数理论)计算,以研究静液压压力对Cocrystal(Benzotrifuroxan)/ TNA的几何和电子结构的影响(2, 4,6-三硝基胺)。当施加静压压力时,除了40GPa和79-83GPa的压力外,晶格常数,体积,密度和总能量变化逐渐变化。值得注意的是,当压力高达83GPa时,新的化学键形状。当施加压力时,COCrystal的带隙变小,最后将COCrystal显示出金属的特征。通过MD(分子动力学)仿真计算CoCrystal的力学性能。结果表明,COCRYSTAL在低温下具有更好的稳定性,并且在295 K处具有最佳韧性。

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