Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, CZ 12116, Prague 2, Czech Republic.
J Mol Model. 2010 May;16(5):895-901. doi: 10.1007/s00894-009-0587-x. Epub 2009 Sep 26.
We have investigated the possibility of a link between the impact sensitivities of energetic compounds and the space available to their molecules in their crystal lattices. As a measure of this space, we use Delta V=V(eff)-V(0.002), where V(eff) is the effective molecular volume obtained from the crystal density and V(0.002) is that enclosed by the 0.002 au contour of the molecule's gas phase electronic density, determined computationally. When experimental impact sensitivity was plotted against Delta V for a series of 20 compounds, the nitramines formed a separate group showing little dependence upon Delta V. Their impact sensitivities correlate well with an anomalous imbalance in the electrostatic potentials on their molecular surfaces, which is characteristic of energetic compounds in general. The imbalance is symptomatic of the weakness of the N-NO(2) bonds, caused by depletion of electronic charge. The impact sensitivities of non-nitramines, on the other hand, depend much more strongly upon Delta V, and can be quite effectively related to it if an electrostatically-based correction term is included.
我们研究了高能化合物的撞击感度与其晶体点阵中分子可利用空间之间的关系。我们用 Delta V=V(eff)-V(0.002)来衡量这个空间,其中 V(eff)是从晶体密度得出的有效分子体积,V(0.002)是分子气相电子密度的 0.002 au 轮廓所包含的体积,这是通过计算确定的。当我们将一系列 20 种化合物的实验撞击感度与 Delta V 作图时,硝胺形成了一个单独的组,它们对 Delta V 的依赖性很小。它们的撞击感度与分子表面上静电势的异常不平衡很好地相关,这是一般高能化合物的特征。这种不平衡是 N-NO(2)键变弱的表现,是由于电子电荷的耗尽引起的。另一方面,非硝胺的撞击感度对 Delta V 的依赖性要大得多,如果包含一个基于静电的校正项,它们可以与 Delta V 非常有效地相关。