Title of article :
Crystal structure, Hirshfeld surface analysis and interaction energy and DFT studies of 2-chloroethyl 2-oxo-1-(prop-2-yn-1-yl)-1,2-dihydroquinoline-4-carboxylate
Author/Authors :
Hayani, Sonia Laboratoire de Chimie Organique Appliquée- Université Sidi Mohamed Ben Abdallah - Faculté des Sciences et Techniques, Morocco , Filali Bab, Yassir Laboratoire de Chimie Organique Appliquée- Université Sidi Mohamed Ben Abdallah - Faculté des Sciences et Techniques, Morocco , Hökelek, Tuncer Laboratoire de Chimie Organique Appliquée- Université Sidi Mohamed Ben Abdallah - Faculté des Sciences et Techniques, Morocco , Ouazzani Chahdi, Fouad Laboratoire de Chimie Organique Appliquée- Université Sidi Mohamed Ben Abdallah - Faculté des Sciences et Techniques, Morocco , Mague, Joel T. Department of Chemistry - Tulane University, USA , Sebbar, Nada Kheira Laboratoire de Chimie Bioorganique Appliquée - Faculté des Sciences - Université Ibn Zohr, Agadir, Morocco , Kandri Rodi, Youssef Laboratoire de Chimie Organique Appliquée- Université Sidi Mohamed Ben Abdallah - Faculté des Sciences et Techniques, Morocco
Abstract :
The title compound, C15H12ClNO3, consists of a 1,2-dihydroquinoline-4-carboxylate unit with 2-chloroethyl and propynyl substituents, where the quinoline moiety is almost planar and the propynyl substituent is nearly perpendicular to its mean plane. In the crystal, the molecules form zigzag stacks along the a-axis direction through slightly offset π-stacking interactions between inversion-related quinoline moieties which are tied together by intermolecular C—HPrpnyl⋯OCarbx and C—HChlethy⋯OCarbx (Prpnyl = propynyl, Carbx = carboxylate and Chlethy = chloroethyl) hydrogen bonds. The Hirshfeld surface analysis of the crystal structure indicates that the most important contributions for the crystal packing are from H⋯H (29.9%), H⋯O/O⋯H (21.4%), H⋯C/C⋯ H (19.4%), H⋯Cl/Cl⋯H (16.3%) and C⋯C (8.6%) interactions. Hydrogen bonding and van der Waals interactions are the dominant interactions in the crystal packing. Computational chemistry indicates that in the crystal, the C—HPrpnyl⋯OCarbx and C—HChlethy⋯OCarbx hydrogen bond energies are 67.1 and 61.7 kJ mol−1, respectively. Density functional theory (DFT) optimized structures at the B3LYP/ 6–311 G(d,p) level are compared with the experimentally determined molecular structure in the solid state. The HOMO–LUMO behaviour was elucidated to determine the energy gap.
Keywords :
crystal structure , quinoline , alkyne , hydrogen bond , π-stacking , Hirshfeld surface
Journal title :
Acta Crystallographica Section E: Crystallographic Communications