Molecular Docking, QTAIM analysis, UV-Vis spectra, Vibrational analysis, Electronic Properties of Lantadene C and D - A Complete Comparative Study

Anoop Kumar Pandey 1
Ankit Kumar Sharma 1
Shashwat Shukla 1
Abhinav Mishra 2
Vijay Singh 3
APOORVA DWIVEDI 4
1
 
K. S. Saket Post Graduate College, Ram Manohar Lohia University, Ayodhya India
4
 
Department of Applied Science and Humanities, Seth Vishambhar Nath Institute of Engineering and Technology, Barabanki India
Publication typeJournal Article
Publication date2023-07-06
scimago Q3
wos Q4
SJR0.231
CiteScore2.8
Impact factor1.2
ISSN20476841, 2047685X
Computer Science Applications
General Materials Science
Mechanics of Materials
Numerical Analysis
Modeling and Simulation
Abstract

We have done geometry optimization of two conformers of Lantadene series C and D. The fundamental vibrational frequencies with intensity have been done by using B3LYP/6-311G (d, p) method. The complete vibrational assignments of wavenumbers are made on the basis of potential energy distribution (PED). The nonbonding interactions in Lantadenes C and D are calculated by using the same level theory at the bond critical point (BCP). The calculated topological parameters at BCP are utilized to determine the nature and strength of interactions. We have also computed HOMO–LUMO gap and plotted frontier orbital HOMO–LUMO surfaces, molecular electrostatic potential surfaces to explain the reactive nature of Lantadenes C and D. The electronic transition spectra UV–Vis spectra of Lantadenes C and D are calculated by using TDDFT theory. The values of hyperpolarizability show a probable use of these compounds in electro-optical applications. The natural bonding orbital theory is utilized to calculate transition of electron from donor to acceptor which is very useful to describe nonbonding as well as bonding interactions. The calculated value of Log [Formula: see text] and Log [Formula: see text] for Lantadene C Lantadene D established its pharmaceutical behaviors. The biological activity of Lantadenes C and D is also calculated by using PASS online server for [Formula: see text]. The docking of Lantadene C Lantadene D is also performed by using Auto dock with predicted drug by Swiss dock online server.

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Pandey A. K. et al. Molecular Docking, QTAIM analysis, UV-Vis spectra, Vibrational analysis, Electronic Properties of Lantadene C and D - A Complete Comparative Study // International Journal of Computational Materials Science and Engineering. 2023.
GOST all authors (up to 50) Copy
Pandey A. K., Sharma A. K., Shukla S., Mishra A., Singh V., DWIVEDI A. Molecular Docking, QTAIM analysis, UV-Vis spectra, Vibrational analysis, Electronic Properties of Lantadene C and D - A Complete Comparative Study // International Journal of Computational Materials Science and Engineering. 2023.
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RIS Copy
TY - JOUR
DO - 10.1142/s2047684123500288
UR - https://doi.org/10.1142/s2047684123500288
TI - Molecular Docking, QTAIM analysis, UV-Vis spectra, Vibrational analysis, Electronic Properties of Lantadene C and D - A Complete Comparative Study
T2 - International Journal of Computational Materials Science and Engineering
AU - Pandey, Anoop Kumar
AU - Sharma, Ankit Kumar
AU - Shukla, Shashwat
AU - Mishra, Abhinav
AU - Singh, Vijay
AU - DWIVEDI, APOORVA
PY - 2023
DA - 2023/07/06
PB - World Scientific
SN - 2047-6841
SN - 2047-685X
ER -
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BibTex (up to 50 authors) Copy
@article{2023_Pandey,
author = {Anoop Kumar Pandey and Ankit Kumar Sharma and Shashwat Shukla and Abhinav Mishra and Vijay Singh and APOORVA DWIVEDI},
title = {Molecular Docking, QTAIM analysis, UV-Vis spectra, Vibrational analysis, Electronic Properties of Lantadene C and D - A Complete Comparative Study},
journal = {International Journal of Computational Materials Science and Engineering},
year = {2023},
publisher = {World Scientific},
month = {jul},
url = {https://doi.org/10.1142/s2047684123500288},
doi = {10.1142/s2047684123500288}
}