UPM Institutional Repository

Structural and computational analysis of a nickel(II) complex with S-benzyldithiocarbazate Schiff base ligand: synthesis, x-ray crystallography, MEP, HOMO-LUMO, Hirshfeld surface analysis, and molecular docking


Citation

Mohamed Tahir, Mohamed Ibrahim and Osman, Uwaisulqarni M. and Noor Hassim, Muhamad Fairus and Zaini Safayi, Nik Nur Syafiqah and Arshad, Suhana and Mohd Nizar, Siti Nabilla Aliya and Abdul Razak, Fazira Ilyana and Sapari, Suhaila (2025) Structural and computational analysis of a nickel(II) complex with S-benzyldithiocarbazate Schiff base ligand: synthesis, x-ray crystallography, MEP, HOMO-LUMO, Hirshfeld surface analysis, and molecular docking. Journal of Molecular Structure, 1321. art. no. 139760. pp. 1-14. ISSN 0022-2860; eISSN: 0022-2860

Abstract

A new compound, benzyl N-[1-(thiophen-2-yl)propylidene]hydrazinecarbodithioate (LH), and its nickel(II) complex (NiL2), were synthesized and structurally identified. Single crystal X-ray diffraction analyses determined that both the LH ligand and the NiL2 complex crystallized in the monoclinic system, with space group P21/c and Z = 4. The LH ligand exhibited lattice parameters of a = 9.661(2)Å, b = 8.995(2)Å, c = 18.939(4)Å, β = 102.677(4)°, V = 1605.7(7)Å3, whereas, NiL2 exhibited a = 17.805(7)Å, b = 10.548(4)Å, c = 18.100(7)Å, β = 108.279(6)°, V = 3228(2)Å3. The NiL2 complex was found to possess a slightly distorted square planar geometry with the LH deprotonated ligand acting as a monoanionic bidentate by coordinating through the azomethine nitrogen and thiolate sulfur atoms. It was observed that the HOMO-LUMO energy gap of the NiL2 complex (0.3654 eV) was lower than that of the LH ligand (2.4425 eV), indicating that NiL2 possesses a higher reactivity than the LH ligand. Intermolecular hydrogen bonding interactions were examined by Hirshfeld surface and 2D fingerprint analysis, which showed predominant H…H interactions for both the LH ligand and the NiL2 complex. A molecular docking simulation study with the dopamine D4 receptor (DRD4) and farnesyltransferase (FTase) revealed that NiL2 was able to interact with 13 residues in FTase, as compared to the farnesyl-Cys drug interacted with 11 residues.


Download File

[img] Text
118687.pdf - Published Version
Restricted to Repository staff only

Download (13MB)

Additional Metadata

Item Type: Article
Divisions: Faculty of Science
DOI Number: https://doi.org/10.1016/j.molstruc.2024.139760
Publisher: Elsevier B.V.
Keywords: Density functional theory (DFT); Dithiocarbazate; Hirshfeld surface analysis; Molecular docking; Ni(II) complex
Depositing User: Mohamad Jefri Mohamed Fauzi
Date Deposited: 22 Jul 2025 02:58
Last Modified: 22 Jul 2025 02:58
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1016/j.molstruc.2024.139760
URI: http://psasir.upm.edu.my/id/eprint/118687
Statistic Details: View Download Statistic

Actions (login required)

View Item View Item