Thomas Sajesh P, Jayatilaka Dylan, Guru Row T N
School of Chemistry and Biochemistry, The University of Western Australia, Crawley, WA, Australia.
Phys Chem Chem Phys. 2015 Oct 14;17(38):25411-20. doi: 10.1039/c5cp04412j.
Experimental charge density analysis combined with the quantum crystallographic technique of X-ray wavefunction refinement (XWR) provides quantitative insights into the intra- and intermolecular interactions formed by acetazolamide, a diuretic drug. Firstly, the analysis of charge density topology at the intermolecular level shows the presence of exceptionally strong interaction motifs such as a DDAA-AADD (D-donor, A-acceptor) type quadruple hydrogen bond motif and a sulfonamide dimer synthon. The nature and strength of intra-molecular S···O chalcogen bonding have been characterized using descriptors from the multipole model (MM) and XWR. Although pure geometrical criteria suggest the possibility of two intra-molecular S···O chalcogen bonded ring motifs, only one of them satisfies the "orbital geometry" so as to exhibit an interaction in terms of an electron density bond path and a bond critical point. The presence of 'σ-holes' on the sulfur atom leading to the S···O chalcogen bond has been visualized on the electrostatic potential surface and Laplacian isosurfaces close to the 'reactive surface'. The electron localizability indicator (ELI) and Roby bond orders derived from the 'experimental wave function' provide insights into the nature of S···O chalcogen bonding.
结合X射线波函数精修(XWR)这一量子晶体学技术的实验电荷密度分析,为利尿药乙酰唑胺形成的分子内和分子间相互作用提供了定量见解。首先,分子间水平的电荷密度拓扑分析表明存在异常强的相互作用基序,如DDAA - AADD(D - 供体,A - 受体)型四重氢键基序和磺酰胺二聚体合成子。利用多极模型(MM)和XWR的描述符对分子内S···O硫属元素键的性质和强度进行了表征。尽管纯几何标准表明存在两种分子内S···O硫属元素键合环基序的可能性,但其中只有一种满足“轨道几何”,从而在电子密度键径和键临界点方面表现出相互作用。导致S···O硫属元素键的硫原子上“σ - 空穴”的存在已在静电势表面和靠近“反应表面”的拉普拉斯等值面上可视化。从“实验波函数”导出的电子定域性指标(ELI)和罗比键级为S···O硫属元素键的性质提供了见解。