首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Prototropic Equilibria in 4-Thiouracil: A Combined Spectroscopic and ab Initio SCF-MO Investigation
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Prototropic Equilibria in 4-Thiouracil: A Combined Spectroscopic and ab Initio SCF-MO Investigation

机译:4-硫氧嘧啶中的质子平衡:光谱和从头算SCF-MO的组合研究

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Prototropic equilibria in 4-thiouracil has been investigated by high-level ab initio calculations. Six of the most stable tautomers have been studied at various levels of theory including the MP4(SDQ)/6-311G(2d,2p)/ /MP2/6-31G(d,p) level. At all levels of theory, the 2-keto-4-thio form is shown to be the most stable one while the 4-thio-2-enolic form is predicted to be the second most stable tautomer. Aqueous solvation is shown only to destabilize the minor tautomers with an energy difference between the two most stable tautomers estimated to be 12.02 kcal/mol, while the corresponding difference in the gas phase is 10.4 kcal/mol. At MP4/6-311G(2d,2p)//MP2/6-31G(d,p) in the gas phase, the following order of stability is observed; 4TU1 > 4TU2 > 4TU3 > 4TU4 > 4TU5 > 4TU6, while in an aqueous phase a stability order of 4TU1 > 4TU2 > 4TU4 > 4TU3 > 4TU6 > 4TU5 is predicted. We corroborate our theoretical findings with spectroscopic studies of UV absorption and the luminescence spectra. Although the UV absorption spectrum of the neutral keto-thionic forms of 4-thiouracil in an aqueous medium is essentially a single-component one indicating that 4-thiouracil exists as a single tautomer in aqueous medium, the luminescence spectrum of these compounds in an ethanol solution was found to be a two-component one suggesting that ethanol could play a key role in stabilizing the minor tautomeric species in excited states. Using combined experimental and theoretical results, we conclude that in an aqueous medium, 4-thiouracil exists in the 2-keto-4-thio form and excludes the possible existence of minor tautomers whereas in ethanol it could exist in two tautomeric forms.
机译:已通过高水平的从头算计算研究了4-硫尿嘧啶中的质子平衡。已经在各种理论水平上研究了六个最稳定的互变异构体,包括MP4(SDQ)/ 6-311G(2d,2p)/ / MP2 / 6-31G(d,p)水平。在所有理论水平上,2-酮-4-硫醇形式被证明是最稳定的,而4-硫-2-烯醇形式被认为是第二最稳定的互变异构体。显示出水溶剂化仅使次要互变异构体不稳定,两个最稳定的互变异构体之间的能量差估计为12.02 kcal / mol,而气相的相应差为10.4 kcal / mol。在气相中MP4 / 6-311G(2d,2p)// MP2 / 6-31G(d,p)处,观察到以下稳定性顺序; 4TU1> 4TU2> 4TU3> 4TU4> 4TU5> 4TU6,而在水相中,预测的稳定性顺序为4TU1> 4TU2> 4TU4> 4TU3> 4TU6> 4TU5。我们通过对紫外线吸收和发光光谱的光谱研究来证实我们的理论发现。尽管在水性介质中4-硫尿嘧啶的中性酮-硫醚形式的紫外吸收光谱基本上是单组分的,表明4-硫尿嘧啶在水性介质中以单个互变异构体的形式存在,但是这些化合物的发光光谱在乙醇中发现该溶液是两组分的,表明乙醇可以在稳定激发态的少数互变异构物种中起关键作用。使用组合的实验和理论结果,我们得出结论,在水性介质中,4-硫尿嘧啶以2-酮基-4-硫基形式存在,并且排除了可能存在的较小互变异构体,而在乙醇中则可能以两种互变异构形式存在。

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