Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative

This article presents both experimental and computational study of a new Ni(II) complex, namely, bis{2-(2-trifluoromethylbenzylidene)hydrazine-1-carbothioamido-κ2N2, S}nickel(II) (abbreviate as NiL2). The complex was synthesized and well characterized using various spectroscopic methods. The single...

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Main Authors: Silvarajoo, S., Noor Hassim, M. F., Arshad, S., Anizaim, A. H., Abdul Razak, F. I.
Format: Article
Published: Hindawi 2021
Subjects:
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author Silvarajoo, S.
Noor Hassim, M. F.
Arshad, S.
Anizaim, A. H.
Abdul Razak, F. I.
author_facet Silvarajoo, S.
Noor Hassim, M. F.
Arshad, S.
Anizaim, A. H.
Abdul Razak, F. I.
author_sort Silvarajoo, S.
collection ePrints
description This article presents both experimental and computational study of a new Ni(II) complex, namely, bis{2-(2-trifluoromethylbenzylidene)hydrazine-1-carbothioamido-κ2N2, S}nickel(II) (abbreviate as NiL2). The complex was synthesized and well characterized using various spectroscopic methods. The single X-ray crystallographic study revealed a distorted square planar geometry around Ni(II) metal ion centre in which the angles deviated from ideal 90° with a maximum value of 6.57° occupied by nitrogen and sulphur donor atoms. The theoretical bond lengths and angles for the NiL2 complex were obtained by using the B3LYP level of density function theory (DFT) with LANL2DZ/6-311G (d, p) basis sets. These results showed very good agreement with the experimental X-ray values. The electrophilicity index (ω = 50.233 eV) shows that the NiL2 complex is a very strong electrophile. In addition, strong F⋯H/H⋯F interactions with 28.5% of the total Hirshfeld surface analyses in NiL2 were obtained indicating that the complex could bind with protein effectively. Furthermore, the new NiL2 complex was docked with plasma retinol-binding protein 4 (RBP4) (PDB id: 5NU7), which implied that the NiL2 complex bound to Tyrosine 133 and Aspartate 102 amino acids via N-H intermolecular hydrogen bonds.
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spelling utm.eprints-940732022-02-28T13:17:15Z http://eprints.utm.my/94073/ Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative Silvarajoo, S. Noor Hassim, M. F. Arshad, S. Anizaim, A. H. Abdul Razak, F. I. Q Science (General) This article presents both experimental and computational study of a new Ni(II) complex, namely, bis{2-(2-trifluoromethylbenzylidene)hydrazine-1-carbothioamido-κ2N2, S}nickel(II) (abbreviate as NiL2). The complex was synthesized and well characterized using various spectroscopic methods. The single X-ray crystallographic study revealed a distorted square planar geometry around Ni(II) metal ion centre in which the angles deviated from ideal 90° with a maximum value of 6.57° occupied by nitrogen and sulphur donor atoms. The theoretical bond lengths and angles for the NiL2 complex were obtained by using the B3LYP level of density function theory (DFT) with LANL2DZ/6-311G (d, p) basis sets. These results showed very good agreement with the experimental X-ray values. The electrophilicity index (ω = 50.233 eV) shows that the NiL2 complex is a very strong electrophile. In addition, strong F⋯H/H⋯F interactions with 28.5% of the total Hirshfeld surface analyses in NiL2 were obtained indicating that the complex could bind with protein effectively. Furthermore, the new NiL2 complex was docked with plasma retinol-binding protein 4 (RBP4) (PDB id: 5NU7), which implied that the NiL2 complex bound to Tyrosine 133 and Aspartate 102 amino acids via N-H intermolecular hydrogen bonds. Hindawi 2021 Article PeerReviewed Silvarajoo, S. and Noor Hassim, M. F. and Arshad, S. and Anizaim, A. H. and Abdul Razak, F. I. (2021) Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative. Bioinorganic Chemistry and Applications, 2021 . ISSN 1565-3633 http://dx.doi.org/10.1155/2021/5536902 DOI: 10.1155/2021/5536902
spellingShingle Q Science (General)
Silvarajoo, S.
Noor Hassim, M. F.
Arshad, S.
Anizaim, A. H.
Abdul Razak, F. I.
Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title_full Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title_fullStr Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title_full_unstemmed Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title_short Synthesis, x-ray structure, hirshfeld surface analysis, dft calculations, and molecular docking studies of nickel(ii) complex with thiosemicarbazone derivative
title_sort synthesis x ray structure hirshfeld surface analysis dft calculations and molecular docking studies of nickel ii complex with thiosemicarbazone derivative
topic Q Science (General)
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