Design, Vibrational and Fluorescence Spectroscopic Properties, and Molecular Docking Studies of 3‐(5‐Bromobenzofuran‐3‐ylmethyl)‐5‐(4‐methoxyphenyl)‐4H‐[1,2,4]‐triazole by Experimental and Density Functional Theory Methods

Author:

Khemalapure Seema S.1,Hiremath Sudhir M.1,Basanagouda Mahantesha M.2,Hiremath Chidanandayya S.3,Koppal Varsha V.4,Jeyaseelan S. Christopher5

Affiliation:

1. Department of Engineering Physics Adarsh Institute of Technology and Research Centre Vita 415311 Maharashtra India

2. Department of Chemistry KLE Society's P.C. Jabin Science College Hubballi 580031 Karnataka India

3. Department of Physics KLE Society's S.K. Arts and H.S.K. Science Institute Hubballi 580031 Karnataka India

4. Department of Physics KLE Technological University, Hubballi-580031 Karnataka India

5. P.G. Department of Physics Mannar Thirumalai Naicker College Madurai 625004 India

Abstract

AbstractIn this work, we have reported the spectral and several other properties of 3‐(5‐bromobenzofuran‐3‐ylmethyl)‐5‐(4‐methoxy‐phenyl)‐4H‐[1,2,4]triazole (BBT) molecule. Primarily, the experimental and computational analyses have been conducted for this molecule and compared the results. The computational studies have been conducted by Gaussian software with the help of DFT/B3LYP/6‐311++G (d, p) basis set. First, we have optimised BBT molecule to conduct the overall computational studies. The detailed computational and experimental vibrational analyses of BBT have been carried out. The electronic absorption and emission spectra of BBT have been observed in a variety of solvents with different solvent parameters like refractive index n, and dielectric constant ϵ. In solvatochromic studies, bathochromic (red) shift have observed in the absorption and emission spectra as an outcome of solute‐solvent interaction due to π → transition. The solvent correlation methods experimentally investigated for the ground and excited‐state dipole moments. Along with these studies, we have also conducted Frontier Molecular Orbital (FMO) and Molecular Electrostatic Potential (MEP) analyses. Further, Molecular docking and drug likeness studies have also been performed to determine the pharmacological properties of the title molecule.

Publisher

Wiley

Subject

General Chemistry

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