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氢键的对称性:同位素扰动 NMR 方法的应用及溶剂化物的相关性。

Symmetry of Hydrogen Bonds: Application of NMR Method of Isotopic Perturbation and Relevance of Solvatomers.

机构信息

Department of Chemistry & Biochemistry University of California, La Jolla, San Diego, CA 92093, USA.

出版信息

Molecules. 2023 May 31;28(11):4462. doi: 10.3390/molecules28114462.

Abstract

Short, strong, symmetric, low-barrier hydrogen bonds (H-bonds) are thought to be of special significance. We have been searching for symmetric H-bonds by using the NMR technique of isotopic perturbation. Various dicarboxylate monoanions, aldehyde enols, diamines, enamines, acid-base complexes, and two sterically encumbered enols have been investigated. Among all of these, we have found only one example of a symmetric H-bond, in nitromalonamide enol, and all of the others are equilibrating mixtures of tautomers. The nearly universal lack of symmetry is attributed to the presence of these H-bonded species as a mixture of solvatomers, meaning isomers (or stereoisomers or tautomers) that differ in their solvation environment. The disorder of solvation renders the two donor atoms instantaneously inequivalent, whereupon the hydrogen attaches to the less well solvated donor. We therefore conclude that there is no special significance to short, strong, symmetric, low-barrier H-bonds. Moreover, they have no heightened stability or else they would have been more prevalent.

摘要

短、强、对称、低能垒氢键(H 键)被认为具有特殊意义。我们一直在使用同位素扰动 NMR 技术寻找对称 H 键。已经研究了各种二羧酸单阴离子、醛烯醇、二胺、亚胺、酸碱复合物和两个空间位阻烯醇。在所有这些中,我们只发现了一个对称 H 键的例子,即在硝基丙二酰胺烯醇中,而其他所有的都是互变异构体的平衡混合物。几乎普遍缺乏对称性归因于这些氢键物种作为溶剂化物混合物的存在,即溶剂化环境不同的异构体(或立体异构体或互变异构体)。溶剂化的无序使两个供体原子瞬间不等效,氢原子就会附着在溶剂化程度较差的供体上。因此,我们得出结论,短、强、对称、低能垒 H 键没有特殊意义。此外,它们没有更高的稳定性,否则它们会更普遍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9284/10254189/30dc65b3771e/molecules-28-04462-g001.jpg

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