从第一原理预测含能物质的性质

R. Podeszwa, B. Rice, Decarlos Taylor, F. Rob, K. Szalewicz
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引用次数: 0

摘要

固体含能材料的性能在很大程度上取决于它们的晶体结构。因此,结构决定了给定化合物用于防御目的的适用性。由于没有简单的方法来预测晶体结构,这种结构只有在给定的材料被合成和结晶之后才能知道。这些结构可以通过量子力学计算来预测,但直到最近,这种预测的可靠性还很低。这种情况随着基于密度泛函理论(DFT)描述单体的对称自适应微扰理论(SAPT)的发展而改变,这种方法被称为SAPT(DFT)。在结合分子堆积、晶格最小化和分子动力学模拟研究中,应用了高能分子二聚体的SAPT(DFT)势来预测这类分子的晶体性质。由第一性原理预测的环三甲基三胺(RDX)晶体的性质与实验结果非常吻合,甚至比根据晶体实验数据拟合的经验势所得到的预测结果还要好。对1,1-二氨基-2,2-二亚基乙烯(FOX-7)晶体的类似研究正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predictions of Properties of Energetic Materials from First Principles
Properties of solid energetic materials depend on a large extent on their crystal structure. Thus, the structure determines suitability of a given compound for defense purposes. Since there are no simple methods to predict crystal structures, such structures become known only after a given material has been synthesized and crystallized. The structures can be predicted from quantum mechanical calculations, but until recently the reliability of such predictions was very low. This situation has changed with the development of symmetryadapted perturbation theory (SAPT) based on densityfunctional theory (DFT) description of monomers, an approach known as SAPT(DFT). The SAPT(DFT) potentials for dimers of energetic molecules were applied to predictions of properties of crystals of such molecules in a combined molecular packing, lattice minimization, and molecular dynamics simulations study. The properties of the cyclotrimethylene trinitramine (RDX) crystal predicted from first principles are in excellent agreement with experiment and the predictions are even somewhat better than achieved by empirical potentials fitted to the crystal experimental data. A similar work on the 1,1-diamino-2,2-dinitroethylene (FOX-7) crystal is in progress.
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