Studiu DFT al spectrelor de dicroism circular vibrațional pentru conformerii acidului ascorbic [Articol]
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În această cercetare, au fost investigate conformațiile acidului ascorbic prin calcule computaționale de tip DFT, utilizând funcționala hibridă B3LYP și setul de bază extins 6-311++G(d,p), bine consacrate în studiile de conformație și spectroscopie vibrațională. Studiul a evidențiat mai mulți conformeri stabili, iar cei situați la maximum 3,5 kcal/mol față de structura geometrică cu cea mai mică energie au fost supuși clasificării energetice pe baza energiei punctuale. Pentru acești conformeri au fost generate spectrele de dicroism circular vibrațional (VCD) la același nivel de teorie, permițând corelarea directă între stabilitatea energetică și caracteristicile spectrale. Rezultatele au arătat că cel mai stabil conformer este C12, cu o energie de stabilizare de –3,63 kcal/mol.
In this research, the conformations of ascorbic acid were investigated by DFT-type computational calculations, using the B3LYP hybrid functional and the 6-311++G(d,p) extended basis set, well established in conformation and vibrational spectroscopy studies. The conformational analysis revealed several stable conformers, and those located at a maximum of 3.5 kcal/mol from the conformer with the lowest energy were subjected to energetic classification based on point energy. Vibrational circular dichroism (VCD) spectra were generated for these conformers at the same level of theory, allowing direct correlation between energetic stability and spectral characteristics. The results showed that the most stable conformer is C12, with a stabilization energy of –3.63 kcal/mol.
In this research, the conformations of ascorbic acid were investigated by DFT-type computational calculations, using the B3LYP hybrid functional and the 6-311++G(d,p) extended basis set, well established in conformation and vibrational spectroscopy studies. The conformational analysis revealed several stable conformers, and those located at a maximum of 3.5 kcal/mol from the conformer with the lowest energy were subjected to energetic classification based on point energy. Vibrational circular dichroism (VCD) spectra were generated for these conformers at the same level of theory, allowing direct correlation between energetic stability and spectral characteristics. The results showed that the most stable conformer is C12, with a stabilization energy of –3.63 kcal/mol.
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ARSENE, Ion și Viorica PURCEL. Studiu DFT al spectrelor de dicroism circular vibrațional pentru conformerii acidului ascorbic. In: Higher education: traditions, values, perspectives: international scientific conference, 19-20 septembrie 2025. Chişinău: CEP UPSC, 2025, Vol. 2, pp. 130-138. ISBN 978-9975-48-319-3. ISBN 978-9975-48-320-9(PDF).