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首页> 外文期刊>The Journal of Organic Chemistry >Ab initio and density functional theory study of keto-enol equilibria of deltic acid in gas and aqueous solution phase: A bimolecular proton transfer mechanism
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Ab initio and density functional theory study of keto-enol equilibria of deltic acid in gas and aqueous solution phase: A bimolecular proton transfer mechanism

机译:气相和水溶液相中delite酸的酮-烯醇平衡的从头算和密度泛函理论研究:双分子质子转移机理

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摘要

Keto-enol tautomerism in deltic acid (2,3-dihydroxycycloprop-2-en-1-one) has been studied using ab initio methods and the B3LYP functional of density functional theory, as well as complete basis set (CBS-QB3 and CBS-APNO) and G4 methods. Relative and absolute energies were calculated with each of the methods, whereas computations of geometries and harmonic frequencies for dihydroxycyclopropenone and hydroxycyclopropanedione were computed in the gas phase but were limited to HF, MP2, and the B3LYP functional, in combination with the 6-31++G(3df,3pd) basis set. Using the MP2/6-31++G(3df,3pd) gas phase optimized structure, each species was then optimized fully in aqueous solution by using the polarizable continuum model (PCM) self-consistent reaction field approach, in which HF, MP2, and B3LYP levels of theory were utilized, with the same 6-31++G(3df,3pd) basis set. In both gas and aqueous solution phases, the keto form is higher in energy for all of the model chemistries considered. From the B3LYP/6-31++G(3df,3pd) Gibbs free energy, the keto-enol tautomeric equilibrium constant for 2,3-dihydroxycycloprop-2-en-1-one/3-hydroxy-1,2- cyclopropanedione is computed to be K _T(gas) = 2.768 × 10 ~(-12) and K _T(aq) = 5.469 × 10 ~(-14). It is concluded that the enol form is overwhelmingly predominant in both environments.
机译:使用从头算方法和密度泛函理论的B3LYP官能团以及完整的基础集(CBS-QB3和CBS),研究了deltic acid(2,3-dihydroxycycloprop-2-en-1-one)中的酮-烯醇互变异构现象-APNO)和G4方法。每种方法都可以计算相对和绝对能量,而气相中可以计算出二羟基环丙烯酮和羟基环丙烷二酮的几何形状和谐波频率,但仅限于HF,MP2和B3LYP官能团,并与6-31 + + G(3df,3pd)基础集。使用MP2 / 6-31 ++ G(3df,3pd)气相优化的结构,然后使用可极化连续介质模型(PCM)自洽反应场方法在水溶液中充分优化每种物质,其中HF,MP2 ,和B3LYP的理论水平被使用,具有相同的6-31 ++ G(3df,3pd)基础集。在气相和水溶液相中,对于所有考虑的模型化学,酮形式的能量都较高。根据B3LYP / 6-31 ++ G(3df,3pd)Gibbs自由能,得出2,3-二羟基环丙-2-烯-1-酮/ 3-羟基-1,2-环丙二酮的酮-烯醇互变异构平衡常数计算得出K_T(gas)= 2.768×10〜(-12)和K_T(aq)= 5.469×10〜(-14)。结论是,在两种环境中,烯醇形式都占绝对优势。

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