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两种具有生物活性的盐酸二氢嘧啶鎓衍生物的多态性:与晶体堆积相关能量学的定量输入

Polymorphism in two biologically active dihydropyrimidinium hydrochloride derivatives: quantitative inputs towards the energetics associated with crystal packing.

作者信息

Panini Piyush, Venugopala K N, Odhav Bharti, Chopra Deepak

机构信息

Department of Chemistry, Indian Institute of Science Education and Research Bhopal, Madhya Pradesh 462066, India.

Department of Biotechnology and Food Technology, Durban University of Technology, Durban 4001, South Africa.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2014 Aug;70(Pt 4):681-96. doi: 10.1107/S2052520614006209. Epub 2014 Jul 31.

Abstract

A new polymorph belonging to the tetrahydropyrimidinium class of compounds, namely 6-(4-chlorophenyl)-5-(methoxycarbonyl)-4-methyl-2-(3-(trifluoromethylthio)phenylamino)-3,6-dihydropyrimidin-1-ium chloride, and a hydrate of 2-(3-bromophenylamino)-6-(4-chlorophenyl)-5-(methoxycarbonyl)-4-methyl-3,6-dihydropyrimidin-1-ium chloride, have been isolated and characterized using single-crystal X-ray diffraction (XRD). A detailed comprehensive analysis of the crystal packing in terms of the associated intermolecular interactions and a quantification of their interaction energies have been performed for both forms of the two different organic salts (A and B) using X-ray crystallography and computational methods such as density functional theory (DFT) quantum mechanical calculations, PIXEL lattice-energy calculations (with decomposition of total lattice energy into the Coulombic, polarization, dispersion and repulsion contribution), the calculation of the Madelung constant (the EUGEN method), Hirshfeld and two-dimensional fingerprint plots. The presence of ionic N-H···Cl(-) and C-H···Cl(-) hydrogen bonds mainly stabilizes the crystal packing in both forms A and B, while in the case of B·H2O N-H···O(water) and O(water)-H···Cl(-) hydrogen bonds along with N-H···Cl(-) and C-H···Cl(-) provide stability to the crystal packing. The lattice-energy calculations from both PIXEL and EUGEN methods revealed that in the case of A, form (I) (monoclinic) is more stable whereas for B it is the anhydrous form that is more stable. The analysis of the `Madelung mode' of crystal packing of two forms of A and B and its hydrates suggest that differences exist in the position of the charged ions/atoms in the organic solid state. The R/E (distance-energy) plots for all the crystal structures show that the molecular pairs in their crystal packing are connected with either highly stabilizing (due to the presence of organic R(+) and Cl(-)) or highly destabilizing Coulombic contacts. The difference in crystal packing and associated intermolecular interactions between polymorphs (in the case of A) or the hydrates (in the case of B) have been clearly elucidated by the analysis of Hirshfeld surfaces and two-dimensional fingerprint plots. The relative contributions of the various interactions to the Hirshfeld surface for the cationic (dihydropyrimidinium) part and anionic (chloride ion) part for the two forms of A and B and its hydrate were observed to be different.

摘要

一种属于四氢嘧啶类化合物的新多晶型物,即6-(4-氯苯基)-5-(甲氧基羰基)-4-甲基-2-(3-(三氟甲硫基)苯基氨基)-3,6-二氢嘧啶-1-氯化铵,以及2-(3-溴苯基氨基)-6-(4-氯苯基)-5-(甲氧基羰基)-4-甲基-3,6-二氢嘧啶-1-氯化铵的水合物,已通过单晶X射线衍射(XRD)进行分离和表征。使用X射线晶体学和计算方法,如密度泛函理论(DFT)量子力学计算、PIXEL晶格能计算(将总晶格能分解为库仑、极化、色散和排斥贡献)、马德隆常数计算(EUGEN方法)、Hirshfeld和二维指纹图谱,对两种不同有机盐(A和B)的两种晶型的晶体堆积及其分子间相互作用进行了详细全面的分析,并对其相互作用能进行了量化。离子型N-H···Cl(-)和C-H···Cl(-)氢键的存在主要稳定了A和B两种晶型的晶体堆积,而在B·H2O的情况下,N-H···O(水)和O(水)-H···Cl(-)氢键以及N-H···Cl(-)和C-H···Cl(-)为晶体堆积提供了稳定性。PIXEL和EUGEN方法的晶格能计算表明,对于A,晶型(I)(单斜晶系)更稳定,而对于B,无水形式更稳定。对A和B两种晶型及其水合物的晶体堆积的“马德隆模式”分析表明,有机固态中带电离子/原子的位置存在差异。所有晶体结构的R/E(距离-能量)图表明,其晶体堆积中的分子对通过高度稳定的(由于存在有机R(+)和Cl(-))或高度不稳定的库仑接触相连。通过对Hirshfeld表面和二维指纹图谱的分析,清楚地阐明了多晶型物(A的情况)或水合物(B的情况)之间晶体堆积和相关分子间相互作用的差异。观察到两种形式的A和B及其水合物中阳离子(二氢嘧啶鎓)部分和阴离子(氯离子)部分对Hirshfeld表面的各种相互作用的相对贡献不同。

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