Feng Shaoxin, Li Tonglei
514 College of Pharmacy, Pharmaceutical Sciences, University of Kentucky, 725 Rose Street, Lexington, Kentucky 40536, USA.
J Phys Chem A. 2005 Aug 18;109(32):7258-63. doi: 10.1021/jp0519666.
Solid-state reactions are commonly observed in organic crystals, including pharmaceutical and agricultural materials, fine chemicals, dyes, explosives, optics, and many other substances. The fact that these reactions are in general highly anisotropic with regard to the initiation and propagation in a crystal has led to this study for investigating the effect of crystal packing on the reaction mechanism and kinetics of organic crystals. We have used electron density-based concepts, including nuclear Fukui function, developed from density functional theory, for elucidating the effect of electronic structures of different polymorphs on the difference in their chemical reactivity. Two polymorphs of flufenamic acid were studied. The calculation results on major reacting faces of the two forms support their reactivity difference with ammonia gas. In addition, we calculated surface energies of reacting faces to discuss how the mechanical difference may affect the propagation of solid-state reaction.
固态反应在有机晶体中普遍存在,包括药物和农用材料、精细化学品、染料、炸药、光学材料以及许多其他物质。这些反应在晶体中的引发和传播通常具有高度各向异性,这一事实促使了本研究去探究晶体堆积对有机晶体反应机理和动力学的影响。我们使用了基于电子密度的概念,包括从密度泛函理论发展而来的核福井函数,以阐明不同多晶型物的电子结构对其化学反应性差异的影响。研究了氟芬那酸的两种多晶型物。两种晶型主要反应面的计算结果支持了它们与氨气反应性的差异。此外,我们计算了反应面的表面能,以探讨力学差异如何影响固态反应的传播。