Ozen Alimet Sema, Doruker Pemra, Aviyente Viktorya
Faculty of Engineering and Natural Sciences, Sabanci University, Orhanli, 34956 Tuzla, Istanbul, Turkey.
J Phys Chem A. 2007 Dec 27;111(51):13506-14. doi: 10.1021/jp0755645. Epub 2007 Dec 5.
Azo-hydrazone tautomerism in azo dyes has been modeled by using density functional theory (DFT) at the B3LYP/6-31+G(d,p) level of theory. The most stable tautomer was determined both for model compounds and for azo dyes Acid Orange 7 and Solvent Yellow 14. The effects of the sulfonate group substitution and the replacement of the phenyl group with naphthyl on the tautomer stability and on the behavior in solvent have been discussed. Intramolecular hydrogen bond energies have been estimated for the azo and hydrazone tautomers to derive a relationship between the tautomer stability and the hydrogen bond strength. The transition structures for proton transfer displayed resonance assisted strong hydrogen bonding properties within the framework of the electrostatic-covalent hydrogen bond model (ECHBM). Evolution of the intramolecular hydrogen bond with changing structural and environmental factors during the tautomeric conversion process has been studied extensively by means of the atoms-in-molecules (AIM) analysis of the electron density. The bulk solvent effect was examined using the self-consistent reaction field model. Special solute-solvent interactions were further investigated by means of quantum mechanical calculations after defining the first-solvation shell by molecular dynamics simulations. The effect of cooperative hydrogen bonding with solvent molecules on the tautomer stability has been discussed.
通过在B3LYP/6-31+G(d,p)理论水平上使用密度泛函理论(DFT)对偶氮染料中的偶氮-腙互变异构进行了建模。确定了模型化合物以及偶氮染料酸性橙7和溶剂黄14的最稳定互变异构体。讨论了磺酸基团取代以及用萘基取代苯基对互变异构体稳定性和在溶剂中行为的影响。对偶氮和腙互变异构体的分子内氢键能进行了估算,以得出互变异构体稳定性与氢键强度之间的关系。质子转移的过渡结构在静电-共价氢键模型(ECHBM)框架内表现出共振辅助强氢键性质。通过分子中原子(AIM)电子密度分析,广泛研究了互变异构转化过程中分子内氢键随结构和环境因素变化的情况。使用自洽反应场模型研究了本体溶剂效应。在通过分子动力学模拟定义第一溶剂化壳后,通过量子力学计算进一步研究了特殊的溶质-溶剂相互作用。讨论了与溶剂分子的协同氢键对互变异构体稳定性的影响。