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Why is the crystal shape of TATB is so similar to its molecular shape? Understanding by only its root molecule

机译:为什么TATB的晶体形状与它的分子形状如此相似?仅通过其根分子来理解

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We present an understanding of the quasi-regular or regular hexagonal enlargement of 1,3,5-triamino-2,4,6 (TATB) from its root molecule to its bulk crystal, by only its root molecule. That is, the mechanism of regular hexagonal TATB molecules stacking to a quasi-regular or regular hexagonal TATB crystal was discussed using a combined method of a density functional theory BLYP and Dreiding forcefield, and a series of static scanning calculations. As a result, we found that there are two styles of forming the most energetically favored TATB dimers: a hydrogen bonding along the molecular plane and an offset π-stacking vertical to the plane, just leading to the outspread and the thickening of the regular hexagon during the crystal growth, respectively. At the same time, it was found that the rotation of one TATB layer in any parallel stacked double-layer should overcome a very high energy barrier. It suggests that the TATB molecules or layers are arranged on the crystal face always along the special orientation of a regular hexagon and other orientations are strongly thermodynamically forbidden, resulting in a hexagonal crystal bulk.
机译:我们目前对1,3,5-triamino-2,4,6(TATB)从其根分子到其本体晶体的准规则或规则六边形扩大的理解,仅是由其根分子。也就是说,使用密度泛函理论BLYP和Dreiding力场的组合方法,以及一系列静态扫描计算,讨论了规则六边形TATB分子堆叠为准规则或规则六边形TATB晶体的机理。结果,我们发现形成两种最受能量欢迎的TATB二聚体的方式是:沿着分子平面的氢键和垂直于平面的偏移π堆积,这仅导致正六边形的扩展和增厚在晶体生长期间。同时,发现在任何平行堆叠的双层中,一个TATB层的旋转都应克服非常高的能垒​​。这表明TATB分子或层始终沿正六边形的特殊方向排列在晶体表面上,强烈热力学上禁止其他方向,从而形成六方晶体块。

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