首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Thermodynamic Functions of Molecular Conformations of (2-Fluoro-2-phenyl-1-ethyl)ammonium Ion and (2-Hydroxy-2-phenyl-1-ethyl)ammonium Ion as Models for Protonated Noradrenaline and Adrenaline: First-Principles Computational Study of Conformations and Thermodynamic Functions for the Noradrenaline and Adrenaline Models
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Thermodynamic Functions of Molecular Conformations of (2-Fluoro-2-phenyl-1-ethyl)ammonium Ion and (2-Hydroxy-2-phenyl-1-ethyl)ammonium Ion as Models for Protonated Noradrenaline and Adrenaline: First-Principles Computational Study of Conformations and Thermodynamic Functions for the Noradrenaline and Adrenaline Models

机译:(2-氟-2-苯基-1-乙基)铵离子和(2-羟基-2-苯基-1-乙基)铵离子的分子构型作为质子化去甲肾上腺素和肾上腺素的模型的热力学功能:第一性原理计算研究肾上腺素和肾上腺素模型的构象和热力学函数

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This paper reports the structural and thermodynamic consequences of substitution of the OH group by the isoelectronic F-atom in the case of the adrenaline family of molecules. The conformational landscapes were explored for the two enantiomeric forms of N-protonated--fluoro--phenyl-ethylamine, also called (2-fluoro-2-phenyl-1-ethyl)-ammonium ion (Model 1) and that of N-protonated-hydroxy-phenyl-ethylamine, also referred to as (2-hydroxy-2-phenyl-1-ethyl)-ammonium (Model 2) models of noradrenaline and adrenaline molecules. These full conformational studies were carried out by first principles of quantum mechanical computations at the B3LYP/6-31G(d,p) and G3MP2B3 levels of theory, using the Gaussian03 program. Also,frequency calculations of the stable structures were performed at the B3LYP/6-31G(d,p), and G3MP2B3 levels of theory. The thermodynamic functions (U, H, S, and G) of the various stable conformations of the title compounds were calculated at these levels of theory for the R and S stereoisomers. Relative values of the thermodynamic functions have been calculated with respect of the chosen reference conformers in which all relevant dihedral angles assumed anti orientation for the Model 1 and Model 2. Through the combination of both point and axis chirality, the enantiomeric and diastereomeric relationships of the six structures for each molecule investigated were established. Intramolecular hydrogen bonding interactions have been studied by the atoms in molecules (AIM) analysis of the electron density. The aromaticity of phenyl group has been determined by a selective hydrogenation protocol. The pattern of the extent of aromacity, due intramolecular interactions, varies very little between the two models studied.
机译:本文报道了在肾上腺素分子家族的情况下,等电F原子取代OH基的结构和热力学后果。研究了N-质子化-氟代-苯基-乙胺(也称为(2-氟-2-苯基-1-乙基)-铵离子(模型1)和N-)的两种对映体形式的构象图质子化的羟基-苯基-乙胺,也称为去甲肾上腺素和肾上腺素分子的(2-羟基-2-苯基-1-乙基)-铵(模型2)模型。使用Gaussian03程序,在B3LYP / 6-31G(d,p)和G3MP2B3的理论水平上,通过量子力学计算的第一原理进行了这些完整的构象研究。此外,在理论上的B3LYP / 6-31G(d,p)和G3MP2B3水平上进行了稳定结构的频率计算。在R和S立体异构体的这些理论水平下,计算出标题化合物的各种稳定构型的热力学函数(U,H,S和G)。已经针对所选参考构象异构体计算了热力学函数的相对值,在这些参考构象异构体中,所有相关的二面角均假定为模型1和模型2的反方向。通过点和轴手性的结合,可得到对映体和非对映体之间的关系。建立了每个研究分子的六个结构。分子内氢键相互作用已通过电子密度的分子中原子(AIM)分析进行了研究。苯基的芳香性已通过选择性氢化方案确定。由于两种分子之间的相互作用,香气程度的模式变化很小。

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