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NMR Structural Study of the Prototropic Equilibrium in Solution of Schiff Bases as Model Compounds

机译:Schiff碱作为模型化合物的溶液中质子平衡的NMR结构研究

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摘要

An NMR titration method has been used to simultaneously measure the acid dissociation constant (pKa) and the intramolecular NHO prototropic constant ΔKNHO on a set of Schiff bases. The model compounds were synthesized from benzylamine and substituted ortho-hydroxyaldehydes, appropriately substituted with electron-donating and electron-withdrawing groups to modulate the acidity of the intramolecular NHO hydrogen bond. The structure in solution was established by 1H-, 13C- and 15N-NMR spectroscopy. The physicochemical parameters of the intramolecular NHO hydrogen bond (pKa, ΔKNHO and ΔΔG°) were obtained from 1H-NMR titration data and pH measurements. The Henderson–Hasselbalch data analysis indicated that the systems are weakly acidic, and the predominant NHO equilibrium was established using Polster–Lachmann δ-diagram analysis and Perrin model data linearization.
机译:NMR滴定法已用于在一组席夫碱上同时测量酸解离常数(pKa)和分子内NHO质子常数ΔKNHO。由苄胺和取代的邻羟基醛合成模型化合物,适当地用供电子基团和吸电子基团取代这些取代基以调节分子内NHO氢键的酸度。溶液中的结构通过 1 H-, 13 C-和 15 N-NMR谱建立。从 1 H-NMR滴定数据和pH测量获得分子内NHO氢键的理化参数(pKa,ΔKNHO和ΔΔG°)。 Henderson–Hasselbalch数据分析表明,系统弱酸性,并且使用Polster–Lachmannδ图分析和Perrin模型数据线性化建立了主要的NHO平衡。

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