Article ID Journal Published Year Pages File Type
1235218 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2011 13 Pages PDF
Abstract

The FT-IR and FT-Raman vibrational spectra of 2,3-naphthalenediol (C10H8O2) have been recorded using Bruker IFS 66V spectrometer in the range of 4000–100 cm−1 in solid phase. A detailed vibrational spectral analysis has been carried out and the assignments of the observed fundamental bands have been proposed on the basis of peak positions and relative intensities. The optimized molecular geometry and vibrational frequencies in the ground state are calculated by using the ab initio Hartree–Fock (HF) and DFT (LSDA and B3LYP) methods with 6-31+G(d,p) and 6-311+G(d,p) basis sets. There are three conformers, C1, C2 and C3 for this molecule. The computational results diagnose the most stable conformer of title molecule as the C1 form. The isotropic computational analysis showed good agreement with the experimental observations. Comparison of the fundamental vibrational frequencies with calculated results by HF and DFT methods. Comparison of the simulated spectra provides important information about the capability of computational method to describe the vibrational modes. A study on the electronic properties, such as absorption wavelengths, excitation energy, dipole moment and Frontier molecular orbital energies, are performed by time dependent DFT approach. The electronic structure and the assignment of the absorption bands in the electronic spectra of steady compounds are discussed. The calculated HOMO and LUMO energies show that charge transfer occurs within the molecule. On the basis of the thermodynamic properties of the title compound at different temperatures have been calculated. The statistical thermodynamic properties (standard heat capacities, standard entropies, and standard enthalpy changes) and their correlations with temperature have been obtained from the theoretical vibrations.

Graphical abstractThe FT-IR and FT-Raman vibrational spectra of 2,3-naphthalenediol (C10H8O2) have been recorded using Bruker IFS 66V spectrometer in the range of 4000–100 cm−1 in solid phase. A detailed vibrational spectral analysis has been carried out and the assignments of the observed fundamental bands have been proposed on the basis of peak positions and relative intensities. The optimized molecular geometry and vibrational frequencies in the ground state are calculated by using the ab initio Hartree–Fock (HF) and DFT (LSDA and B3LYP) methods with 6-31+G(d,p) and 6-311+G(d,p) basis sets. There are three conformers, C1, C2 and C3 for this molecule. The electronic structure and the assignment of the absorption bands in the electronic spectra of steady compounds are discussed. The calculated HOMO and LUMO energies show that charge transfer occurs within the molecule. On the basis of the thermodynamic properties of the title compound at different temperatures have been calculated. The statistical thermodynamic properties (standard heat capacities, standard entropies, and standard enthalpy changes) and their correlations with temperature have been obtained from the theoretical vibrations.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► The FT-IR and FT-Raman vibrational spectra of 2,3-naphthalenediol have been recorded in solid phase. ► The optimized molecular geometry and vibrational frequencies are calculated using the HF and DFT. ► HF/DFT with 6-31+G(d,p) and 6-311+G(d,p) basis sets are used. ► The calculated HOMO and LUMO energies show that charge transfer occurs within the molecule. ► The statistical thermodynamic properties and their correlations with temperature have been obtained from the theoretical vibrations.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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