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非规范的环己烷 C-Hax···Yax 氢键相互作用:合适的轴向环己烷模型的 1H NMR 光谱的理论预测和实验证据。

Improper hydrogen bonded cyclohexane C-Hax···Yax contacts: theoretical predictions and experimental evidence from 1H NMR spectroscopy of suitable axial cyclohexane models.

机构信息

Faculty of Pharmacy, Department of Pharmaceutical Chemistry, University of Athens, Athens, Greece.

出版信息

J Org Chem. 2011 Jun 3;76(11):4432-43. doi: 10.1021/jo102353f. Epub 2011 May 5.

Abstract

C-H(ax)···Y(ax) contacts are a textbook prototype of steric hindrance in organic chemistry. The nature of these contacts is investigated in this work. MP2/6-31+G(d,p) calculations predicted the presence of improper hydrogen bonded C-H(ax)···Y(ax) contacts of different strength in substituted cyclohexane rings. To support the theoretical predictions with experimental evidence, several synthetic 2-substituted adamantane analogues (1-24) with suitable improper H-bonded C-H(ax)···Y(ax) contacts of different strength were used as models of a substituted cyclohexane ring. The (1)H NMR signal separation, Δδ(γ-CH(2)), within the cyclohexane ring γ-CH(2)s is raised when the MP2/6-31+G(d,p) calculated parameters, reflecting the strength of the H-bonded C-H(ax)···Y(ax) contact, are increased. In molecules with enhanced improper H-bonded contacts C-H(ax)···Y(ax), like those having sterically crowded contacts (Y(ax) = t-Bu) or contacts including considerable electrostatic attractions (Y(ax) = O-C or O═C) the calculated DFT steric energies of the γ-axial hydrogens are considerably reduced reflecting their electron cloud compression. The results suggest that the proton H(ax) electron cloud compression, caused by the C-H(ax)···Y(ax) contacts, and the resulting increase in Δδ(γ-CH(2)) value can be effected not just from van der Waals spheres compression, but more generally from electrostatic attraction forces and van der Waals repulsion, both of which are improper H-bonding components.

摘要

C-H(ax)···Y(ax) 接触是有机化学中空间位阻的典型范例。本工作研究了这些接触的性质。MP2/6-31+G(d,p) 计算预测了取代环己烷环中不同强度的不适当氢键 C-H(ax)···Y(ax) 接触的存在。为了用实验证据支持理论预测,使用了几个具有不同强度的适当不适当氢键 C-H(ax)···Y(ax) 接触的合成 2-取代金刚烷类似物(1-24)作为取代环己烷环的模型。当 MP2/6-31+G(d,p) 计算参数(反映氢键 C-H(ax)···Y(ax) 接触的强度)增加时,环己烷环 γ-CH(2) 内的 (1)H NMR 信号分离,Δδ(γ-CH(2)) 升高。在具有增强的不适当氢键 C-H(ax)···Y(ax) 接触的分子中,例如那些具有空间拥挤接触(Y(ax) = t-Bu)或包含相当大的静电吸引接触(Y(ax) = O-C 或 O═C)的分子,计算的 γ-轴向氢的 DFT 空间能显着降低,反映了它们的电子云压缩。结果表明,由 C-H(ax)···Y(ax) 接触引起的质子 H(ax) 电子云压缩以及由此导致的 Δδ(γ-CH(2)) 值的增加不仅可以通过范德华球体压缩来实现,而且更普遍地可以通过静电吸引力和范德华排斥力来实现,这两者都是不适当的氢键成分。

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