Literature DB >> 35072679

Unusual chalcogen⋯chalcogen interactions in like⋯like and unlike YCY⋯YCY complexes (Y = O, S, and Se).

Mahmoud A A Ibrahim1, Mohammed N I Shehata1, Mahmoud E S Soliman2, Mahmoud F Moustafa3,4, H R Abd El-Mageed5, Nayra A M Moussa1.   

Abstract

Chalcogen⋯chalcogen interactions were investigated within four types of like⋯like and unlike YCY⋯YCY complexes (where Y = O, S, or Se). A plethora of quantum mechanical calculations, including molecular electrostatic potential (MEP), surface electrostatic potential extrema, point-of-charge (PoC), quantum theory of atoms in molecules (QTAIM), noncovalent interaction (NCI), and symmetry-adapted perturbation theory-based energy decomposition analysis (SAPT-EDA) calculations, were executed. The energetic findings revealed a preferential tendency of the studied chalcogen-bearing molecules to engage in type I, II, III, or IV chalcogen⋯chalcogen interactions. Notably, the selenium-bearing molecules exhibited the most potent ability to favorably participate in all the explored chalcogen⋯chalcogen interactions. Among like⋯like complexes, type IV interactions showed the most favorable negative binding energies, whereas type III interactions exhibited the weakest binding energies. Unexpectedly, oxygen-containing complexes within type IV interactions showed an alien pattern of binding energies that decreased along with an increase in the chalcogen atomic size level. QTAIM analysis provided a solo BCP, via chalcogen⋯chalcogen interactions, with no clues as to any secondary ones. SAPT-EDA outlined the domination of the explored interactions by the dispersion forces and indicated the pivotal shares of the electrostatic forces, except type III σ-hole⋯σ-hole and di-σ-hole interactions. These observations demonstrate in better detail all the types of chalcogen⋯chalcogen interactions, providing persuasive reasons for their more intensive use in versatile fields related to materials science and drug design.

Entities:  

Year:  2022        PMID: 35072679     DOI: 10.1039/d1cp02706a

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  3 in total

1.  External Electric Field Effect on the Strength of σ-Hole Interactions: A Theoretical Perspective in Like⋯Like Carbon-Containing Complexes.

Authors:  Mahmoud A A Ibrahim; Nayra A M Moussa; Afnan A K Kamel; Mohammed N I Shehata; Muhammad Naeem Ahmed; Fouad Taha; Mohammed A S Abourehab; Ahmed M Shawky; Eslam B Elkaeed; Mahmoud E S Soliman
Journal:  Molecules       Date:  2022-05-05       Impact factor: 4.927

2.  σ-Hole and LP-Hole Interactions of Pnicogen···Pnicogen Homodimers under the External Electric Field Effect: A Quantum Mechanical Study.

Authors:  Mahmoud A A Ibrahim; Nayra A M Moussa; Sherif M A Saad; Muhammad Naeem Ahmed; Ahmed M Shawky; Mahmoud E S Soliman; Gamal A H Mekhemer; Al-Shimaa S M Rady
Journal:  ACS Omega       Date:  2022-03-22

3.  Type I-IV Halogen⋯Halogen Interactions: A Comparative Theoretical Study in Halobenzene⋯Halobenzene Homodimers.

Authors:  Mahmoud A A Ibrahim; Rehab R A Saeed; Mohammed N I Shehata; Muhammad Naeem Ahmed; Ahmed M Shawky; Manal M Khowdiary; Eslam B Elkaeed; Mahmoud E S Soliman; Nayra A M Moussa
Journal:  Int J Mol Sci       Date:  2022-03-14       Impact factor: 5.923

  3 in total

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