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Scaled Quantum Chemical Studies of the Molecular Structure and Vibrational Spectra of Minoxidil
Authors:Sambantham Muthu  Arunachalam Prabakaran
Institution:1. Department of Physics , Sri Venkateswara College of Engineering , Sriperumbudur , India muthu@svce.ac.in;4. mutgee@gmail.com;5. Department of Physics , Pallavan College of Engineering , Kanchipuram , India;6. Department of Physics , Bharathiar University , Coimbatore , India
Abstract:The Fourier transform Raman and Fourier transform infrared spectra for minoxidil have been recorded in the region 4000—100 cm?1 and 4000—450 cm?1, respectively. The structural and spectroscopy data of the molecule in the ground state were calculated by using density functional theory methods with 6-311G (d, p) basis set. A detailed vibrational analysis of the title compound has been done using normal coordinate analysis following the scaled quantum mechanical force field methodology. The calculated molecular geometry parameters and scaled vibrational wavenumbers are well compared with the experimental data. The electronic properties, such as excitation energies, absorption wavelength, highest occupied molecular orbital (HOMO), and lowest unoccupied molecular orbital (LUMO) energies were performed by time-dependent density functional theory approach, and the results are in good agreement with experimental absorption spectrum. The charge delocalizations of these molecules have been analyzed using natural bond orbital analysis. The molecule orbital contributions are studied by density of energy states. Fukui functions, local softness, and electrophilicity indices for selected atomic sites of the title compound are determined. Finally, the thermal behaviors of the compound have been calculated by different temperature.
Keywords:density functional theory  natural bonding orbital  normal coordinate analysis  potential energy surface
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