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首页> 外文期刊>Journal of Physical Organic Chemistry >Inter- and intramolecular hydrogen bonds in polyamines: Variable-concentration 1H-NMR studies
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Inter- and intramolecular hydrogen bonds in polyamines: Variable-concentration 1H-NMR studies

机译:多胺中的分子间和分子内氢键:可变浓度1H-NMR研究

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摘要

Inter- and intramolecular hydrogen bonding play an important role in determining the arrangement, physical properties, and reactivity of a great diversity of structures in chemical and biological systems. Several aromatic nucleophilic substitutions (ANS) in nonpolar aprotic, (non-HBD), solvents recently studied in our laboratory have demonstrated the importance of self-association of amines by hydrogen-bond interactions. In this paper, we describe ~1H-NMR studies carried out at room temperature on bi- and polyfunctionalized amines, namely: N-(3-amino-1-propyl)morpholine (3-APMo), histamine, 2-guanidinobenzimidazole (2-GB), 1,2-diaminoethane (EDA), 3-dimethylamino-l-propylamine (DMPA), and 1-(2-aminoethyl)piperidine (2-AEPip). By ~1H-NMR measurements of amine solutions at variable concentrations we have shown that 3-APMo, histamine and 2-GB are able to form a six-membered ring by intramolecular hydrogen bonding, while EDA, DMPA, and 2-AEPip form dimers by intermolecular hydrogen bonds. Likewise, variable concentration ~1H-NMR studies allowed estimation of the corresponding equilibrium constants for the dimerization. These results are correlated with experimental kinetic results of ANS, confirming hereto the relevance of the "dimer mechanism" in reactions involving these amines.
机译:分子间和分子内的氢键在确定化学和生物系统中结构的多样性方面具有重要作用。最近在我们实验室中研究的非极性非质子(非HBD)溶剂中的几种芳香亲核取代基(ANS)已证明了胺通过氢键相互作用自缔合的重要性。在本文中,我们描述了在室温下对双官能和多官能胺(即N-(3-氨基-1-丙基)吗啉(3-APMo),组胺,2-胍基苯并咪唑(2 -GB),1,2-二氨基乙烷(EDA),3-二甲基氨基-1-丙胺(DMPA)和1-(2-氨基乙基)哌啶(2-AEPip)。通过〜1H-NMR在可变浓度下对胺溶液的测量,我们表明3-APMo,组胺和2-GB能够通过分子内氢键形成六元环,而EDA,DMPA和2-AEPip形成二聚体通过分子间氢键。同样,可变浓度〜1H-NMR研究可以估算二聚作用的相应平衡常数。这些结果与ANS的实验动力学结果相关,从而证实了在涉及这些胺的反应中“二聚体机理”的相关性。

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