4.6 Article

Synthesis, crystal structure, Hirshfeld surface analysis, DNA binding, optical and nonlinear optical properties of Schiff bases derived from o-aminophenol

Journal

JOURNAL OF MOLECULAR STRUCTURE
Volume 1274, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.molstruc.2022.134427

Keywords

Supramolecular assembly; Hirshfeld surface analysis; DNA binding; NLO properties; Electronic properties

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The current work focused on synthesizing two new Schiff base ligands derived from o-aminophenol, named 2-[(E)-(3-chlorophenyl)methylidene]amino-phenol (2AP3Cl) and 4-Chloro-2-(E)-[(2-hydroxyphenyl)iminio]methyl-phenolate (2AP5Cl). Various spectroanalytical techniques were used to characterize the synthesized Schiff bases. Single crystal X-ray diffraction studies revealed that 2AP3Cl and 2AP5Cl adopted enol and keto tautomeric forms, respectively. The supramolecular assembly and crystal packing environment were investigated through Hirshfeld surface analysis and molecular energy calculations. Both compounds showed promising nonlinear optical properties and DNA binding abilities. The findings suggest potential applications in NLO and other fields.
The current work focuses on the synthesis of the two new Schiff base ligands derived from o- aminophenol named 2-[(E)-(3-chlorophenyl)methylidene]amino-phenol (2AP3Cl) and 4-Chloro-2-(E)-[(2-hydroxyphenyl)iminio]methyl-phenolate (2AP5Cl). The synthesized Schiff bases were characterized by dif-ferent Spectro analytical techniques like CHN, FT-IR, and NMR ( 1 H and 13 C) analysis. Moreover, a single crystal X-ray diffraction (SC-XRD) study was carried out for both compounds, which inferred that 2AP3Cl and 2AP5Cl adopted enol and keto tautomeric forms, respectively. The supramolecular assembly with respect to strong and comparatively weak non-covalent interactions was explored by Hirshfeld surface analysis. The interaction energy between molecular pairs, energy frameworks, and void analysis was per-formed to further investigate the crystal packing environment. Both compounds were screened for their DNA binding abilities. Moreover, quantum chemical methods were applied to study the electronic struc-ture, linear and nonlinear optical (NLO) polarizabilities of the synthesized Schiff bases. The 2AP3Cl and 2AP5Cl molecules exhibited good NLO hyperpolarizability of 9.62 x 10 4 and 7.90 x 10 4 au., respectively. The calculation of molecular electrostatic potentials, 3-D visualization of frontier molecular orbitals, and their orbital gaps were also studied. Overall, reasonably good third-order NLO response properties were calculated, which show a decent potential of synthesized compounds for their potential for NLO applica-tions.(c) 2022 Elsevier B.V. All rights reserved.

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