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关于端基异构效应和外端基异构效应的广义价键描述:2-甲氧基四氢吡喃的从头算构象研究

On the generalized valence bond description of the anomeric and exo-anomeric effects: an ab initio conformational study of 2-methoxytetrahydropyran.

作者信息

Bitzer Rodrigo S, Barbosa André G H, da Silva Clarissa O, Nascimento Marco A C

机构信息

Departamento de Físico-Química, Instituto de Química, Universidade Federal do Rio de Janeiro, Brazil.

出版信息

Carbohydr Res. 2005 Sep 26;340(13):2171-84. doi: 10.1016/j.carres.2005.07.001.

Abstract

An ab initio conformational study of the alpha- and beta-glycosidic C1-O1 bonds has been carried out on the axial and equatorial forms of 2-methoxytetrahydropyran (2-MTHP) at the HF/6-31G(d,p) and GVB-PP/6-31G(d,p) levels of calculation. Six conformers of 2-MTHP were fully optimized at both levels. The calculations have shown that the conformer containing the (+sc) orientation around the axial C1-O1 bond is the most stable one and is favored over that bearing the (-sc) arrangement about the equatorial C1-O1 bond by 1.39 (HF) and 1.52 (GVB-PP)kcal/mol. The potential energy surfaces for rotating about the axial and equatorial C1-O1 bonds were constructed at the HF and GVB-PP levels. For each form of 2-MTHP the HF and GVB-PP potential curves exhibit similar profiles. This shows that both methods provide similar descriptions for the position of the conformational minima and for the values and location of the rotational barriers. In addition to the conformational study, a discussion concerning the nature of the chemical bond in acetal fragments and the origin of the anomeric and exo-anomeric effects is presented in terms of optimized non-orthogonal GVB orbitals of 2-MTHP. The intramolecular factors that respond for the order of stability and conformational changes in bond lengths of the conformers of 2-MTHP are examined in light of the GVB description. The problems associated with the use of the NBOs (natural bond orbitals) to analyze chemical bonding in the acetal fragments are discussed, and the choice for the GVB-PP description is justified.

摘要

在HF/6 - 31G(d,p)和GVB - PP/6 - 31G(d,p)计算水平上,对2 - 甲氧基四氢吡喃(2 - MTHP)的轴向和赤道形式的α - 和β - 糖苷键C1 - O1进行了从头算构象研究。在这两个水平上对2 - MTHP的六个构象异构体进行了完全优化。计算表明,围绕轴向C1 - O1键具有(+sc)取向的构象异构体是最稳定的,比围绕赤道C1 - O1键具有(-sc)排列的构象异构体更稳定,能量差为1.39(HF)和1.52(GVB - PP)kcal/mol。在HF和GVB - PP水平上构建了围绕轴向和赤道C1 - O1键旋转的势能面。对于2 - MTHP的每种形式,HF和GVB - PP势能曲线呈现相似的轮廓。这表明两种方法对构象最小值的位置以及旋转势垒的值和位置提供了相似的描述。除了构象研究外,还根据2 - MTHP优化的非正交GVB轨道,对缩醛片段中化学键的性质以及端基异构效应和外端基异构效应的起源进行了讨论。根据GVB描述,研究了影响2 - MTHP构象异构体稳定性顺序和键长构象变化的分子内因素。讨论了使用自然键轨道(NBOs)分析缩醛片段中化学键时存在的问题,并说明了选择GVB - PP描述的合理性。

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