乙醇胺在水-有机介质中的电离

D. Snigur, A. Chebotarev, T. M. Shcherbakova, E. M. Rakhlytskaya, V. V. Shapovalenko
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摘要

本文用电位滴定法测定了几种含氮有机碱(单乙醇胺、二乙醇胺和三乙醇胺)在不同有机溶剂浓度的水-乙醇、水-丙酮和水-乙腈溶液中的电离常数(pKa)。结果表明,随着有机溶剂浓度的增加,单乙醇胺、二乙醇胺和三乙醇胺在有机水溶液中的pKa值自然降低。结果表明,所研究的含氮有机碱的电子给体能力的性质和变化程度对它们的性质和介质的物理化学性质有显著影响。值得注意的是,对于所研究的含氮有机碱(单乙醇胺、二乙醇胺和三乙醇胺),当从水介质过渡到有机介质(乙醇或丙酮或乙腈)时,pKa值随着体系中有机溶剂含量的增加而自然降低。一般来说,在从水介质到有机介质(乙醇或丙酮或乙腈)的转变过程中,pKa的变化可达1.73单位。结果表明,电位滴定法测定的含氮有机碱的pKa值与水-乙醇、水-丙酮或水-乙腈溶液介电常数的反比呈线性关系,符合伊兹梅洛夫理论。因此,我们可以得出结论,混合溶剂组分比例的变化以及介质的介电渗透率一般不会导致所研究的含氮有机碱的溶剂化特性发生显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IONIZATION OF ETHANOLAMINES IN WATER- ORGANIC MEDIA
In this paper, the ionization constants (pKa) of some nitrogen-containing organic bases (monoethanolamine, diethanolamine and triethanolamine) in water-ethanol, water-acetone and water-acetonitrile solutions at various concentrations of organic solvent in the studied systems have been determined by the potentiometric titration method. It was found that the values of pKa of monoethanolamine, diethanolamine and triethanolamine in aqueous-organic solutions naturally decreases with increasing concentration of organic solvent in the system. It was shown that their nature and the physico-chemical properties of the medium are significantly influenced by the nature and degree of change in the electron donor ability of the studied nitrogen-containing organic bases. It should be noted that for the studied nitrogen-containing organic bases (monoethanolamine, diethanolamine and triethanolamine), when passing from an aqueous medium to an organic one (ethanol or acetone or acetonitrile), the pKa values naturally decrease with an increase in the content of the organic solvent in the system. In general, in the transition from an aqueous medium to an organic one (ethanol or acetone or acetonitrile), a change in pKa can reach 1.73 units. It was established that the dependence of the values of pKa of nitrogen-containing organic bases which were determinate via potentiometric titration method on the inverse of the dielectric constant of water-ethanol and water-acetone or water-acetonitrile solutions tends to be linear, consistent with Izmailov’s theory. Thus, we can conclude that the change in the ratio of the mixed solvent components and, as a result, in general, dielectric permeability of the medium does not lead to a significant change in the solvation characteristics of the studied nitrogen-containing organic bases.
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