Bioactive Small Molecule, Piperazinium Bis(4-Hydroxybenzenesulphonate) upon Spectral Investigation, Hirshfeld Surface Analysis, Molecular Docking and ADMET Prediction: A Complement DFT Calculations

被引:0
|
作者
Vincy, C. Dabora [1 ,2 ]
George, Jesby [3 ]
Tarika, J. D. Deephlin [1 ,2 ]
Balachandar, S. [4 ]
Shihab, N. K. [5 ]
Beaula, T. Joselin [1 ,2 ,6 ,7 ]
机构
[1] Malankara Catholic Coll, Dept Phys, Mariagiri, India
[2] Malankara Catholic Coll, Res Ctr, Mariagiri, India
[3] St Dominics Coll Kanjirapally, Dept Phys, Parathode, India
[4] Vivekanandha Coll Arts & Sci Women Autonomous, Dept Chem, Namakkal, India
[5] TKM Coll Engn, Dept Phys, Kollam, India
[6] Malankara Catholic Coll, Dept Phys, Mariagiri 629153, Tamilnadu, India
[7] Malankara Catholic Coll, Res Ctr, Mariagiri 629153, Tamilnadu, India
关键词
Charge transfer; charge transfer excitation; singly occupied molecular orbital; spin density; independent gradient model; DENSITY-FUNCTIONAL THEORY; AB-INITIO; VIBRATIONAL-SPECTRA; CRYSTAL-STRUCTURE; THERMAL-BEHAVIOR; CHARGE-TRANSFER; HARTREE-FOCK; ANTIBACTERIAL; DERIVATIVES; COMPUTATIONS;
D O I
10.1080/10406638.2022.2150658
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Piperazinium bis (4-hydroxybenzenesulphonate) (P4HBS) was studied using FT-IR, FT-Raman, UV spectra, and quantum chemical calculations. To obtain the geometry of the molecule, computational methods were used with the Gaussian'09w package and B3LYP/cc-pVTZ as the basis set. The stretching wave number of hydrogen bond donor NH2+ and hydrogen bond acceptor SO3- is red shifted due to protonation, according to vibrational analysis. Frontier molecular orbital analysis was used to confirm the molecule's molecular reactivity and kinetic stability. The electronic transition observed in the UV-visible spectrum, which was measured experimentally, was identified using TD-DFT. MEP plot, Fukui function. Natural population analysis confirm that OH groups and SO3 groups are electrophilic attack sites, while hydrogen atoms in the Piperazinium ring are nucleophilic attack sites. The Independent Gradient Model (IGM) and Hirshfeld surface analysis were used to determine the weak van der Waals and strong intermolecular hydrogen bonding interactions, respectively. The antifungal activity against the fungus Candida albicans and Aspergillus flaves was determined by the disk diffusion technique. Through binding energy, molecular docking studies were performed to identify the effective lead compound against the C. albicans fungal pathogen. ADMET properties with improved pharmacokinetic properties were predicted.
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页码:8729 / 8751
页数:23
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