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dc.creatorMancini, Daiana T.-
dc.creatorSouza, Eugenio F.-
dc.creatorCaetano, Melissa S.-
dc.creatorRamalho, Teodorico C.-
dc.date.accessioned2020-05-24T22:05:28Z-
dc.date.available2020-05-24T22:05:28Z-
dc.date.issued2014-01-
dc.identifier.citationMANCINI, D. T. et al. 99Tc NMR as a promising technique for structural investigation of biomolecules: theoretical studies on the solvent and thermal effects of phenylbenzothiazole complex. Magnetic Resonance in Chemistry, [S.l.], v. 52, p. 129-137, Jan. 2014. DOI: 10.1002/mrc.4043.pt_BR
dc.identifier.urihttps://onlinelibrary.wiley.com/doi/abs/10.1002/mrc.4043pt_BR
dc.identifier.urihttp://repositorio.ufla.br/jspui/handle/1/41174-
dc.description.abstractThe phenylbenzothiazole compounds show antitumor properties and are highly selective. In this paper, the 99Tc chemical shifts based on the (99mTc)(CO)3(NNO) complex conjugated to the antitumor agent 2‐(4′‐aminophenyl)benzothiazole are reported. Thermal and solvent effects were studied computationally by quantum‐chemical methods, using the density functional theory (DFT) (DFT level BPW91/aug‐cc‐pVTZ for the Tc and BPW91/IGLO‐II for the other atoms) to compute the NMR parameters for the complex. We have calculated the 99Tc NMR chemical shifts of the complex in gas phase and solution using different solvation models (polarizable continuum model and explicit solvation). To evaluate the thermal effect, molecular dynamics simulations were carried, using the atom‐centered density matrix propagation method at the DFT level (BP86/LanL2dz). The results highlight that the 99Tc NMR spectroscopy can be a promising technique for structural investigation of biomolecules, at the molecular level, in different environments.pt_BR
dc.languageen_USpt_BR
dc.publisherWileypt_BR
dc.rightsrestrictAccesspt_BR
dc.sourceMagnetic Resonance in Chemistry (MRC)pt_BR
dc.subjectNMRpt_BR
dc.subject99Tcpt_BR
dc.subjectPhenylbenzothiazolept_BR
dc.subjectDFT methodpt_BR
dc.subjectTheoretical studypt_BR
dc.subjectSolvent effectpt_BR
dc.subjectThermal effectpt_BR
dc.subjectDensity functional theorypt_BR
dc.subjectNuclear magnetic resonance (NMR)pt_BR
dc.title99Tc NMR as a promising technique for structural investigation of biomolecules: theoretical studies on the solvent and thermal effects of phenylbenzothiazole complexpt_BR
dc.typeArtigopt_BR
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