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Crystal structure, Hirshfeld surface analysis, calculations of crystal voids, interaction energy and energy frameworks as well as density functional theory (DFT) calculations of 3-[2-(morpholin-4-yl)-ethyl]-5,5-diphenylimidazolidine-2,4-dione

  • Houda Lamssane
  • , Amal Haoudi
  • , Badr Eddine Kartah
  • , Ahmed Mazzah
  • , Joel T. Mague
  • , Tuncer Hökelek
  • , Youssef Kandri Rodi
  • , Nada Kheira Sebbar
  • Sidi Mohamed Ben Abdellah University
  • Mohammed V University in Rabat
  • Science and Technology of Lille USR 3290
  • Tulane University
  • Ibn Zohr University

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

In the title molecule, C21H23N3O3, the imidazolidine ring slightly deviates from planarity and the morpholine ring exhibits the chair conformation. In the crystal, N—H O and C—H O hydrogen bonds form helical chains of molecules extending parallel to the c axis that are connected by C—H (ring) interactions. A Hirshfeld surface analysis reveals that the most important contributions for the crystal packing are from H H (55.2%), H C/C H (22.6%) and H O/O H (20.5%) interactions. The volume of the crystal voids and the percentage of free space were calculated to be 236.78 A 3 and 12.71%, respectively. Evaluation of the electrostatic, dispersion and total energy frameworks indicates that the stabilization is dominated by the nearly equal electrostatic and dispersion energy contributions. The DFT-optimized molecular structure at the B3LYP/6-311 G(d,p) level is compared with the experimentally determined molecular structure in the solid state. Moreover, the HOMO–LUMO behaviour was elucidated to determine the energy gap.

Original languageEnglish
Pages (from-to)423-429
Number of pages7
JournalActa Crystallographica Section E: Crystallographic Communications
Volume80
Issue numberPt 4
DOIs
Publication statusPublished - 1 Mar 2024

Keywords

  • C—H (ring) interaction
  • crystal structure
  • hydrogen bond
  • imidazolidinedione

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