298.15 K时烷氧乙醇和某些选定胺二元混合物的体积行为

A. Kemeakegha, G. .. Cookey, W. L. Izonfuo
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引用次数: 10

摘要

2-甲氧基乙醇(2-MeO-EtOH)和2-乙氧基乙醇(2-EtO-EtOH)与己胺(HLA)、二乙胺(DEA)、三乙胺(TEA)、叔丁胺(TBA)、苯胺(ANL)和苄胺(BLA)二元混合物的密度在298.15 K下测定了不同组成的烷氧烷醇。根据二元混合物和组分单一溶剂的实验密度数据,计算二元混合物的过量摩尔体积VE。将计算得到的过量摩尔体积拟合到Redlich-Kister多项式中,得到拟合系数和标准差。所研究的所有溶剂体系的二元混合物的过量摩尔体积在溶剂组成的整个范围内都是负的。负值归因于混合物中不同分子之间的氢键形成比纯组分中相同分子之间的氢键形成更强。2-甲氧基乙醇与脂肪胺二元混合物的过量摩尔体积大小为TBA > TEA > DEA > HEA。两种芳香胺的数量级均为BLA > ANL。对于胺和2-乙氧基乙醇的二元混合物,在2-乙氧基乙醇的摩尔分数≤0.5时,其数量级为DEA > TEA > TBA > HEA,在2-乙氧基乙醇的摩尔分数大于0.5时,其数量级为TBA > TEA > DEA > HEA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Volumetric Behavior of Binary Mixtures of Alkoxyethanols and Some Selected Amines at 298.15 K
Densities of binary mixtures of 2-methoxyethanol (2-MeO-EtOH) and 2-ethoxyethanol (2-EtO-EtOH) with hexylamine (HLA), diethylamine (DEA), triethylamine (TEA), tert-butylamine (TBA), aniline (ANL), and benzylamine (BLA) have been determined at varying compositions of the alkoxyalkanols at 298.15 K. The excess molar volumes, VE, of the binary mixtures were calculated from the experimental density data of the mixtures and the component single solvents. The calculated excess molar volumes were fitted into the Redlich-Kister polynomial to obtain the fitting coefficients and standard deviations. The excess molar volumes of the binary mixtures of all the solvent systems investigated were negative over the entire range of the solvents composition. The negative values were attributed to stronger hydrogen bond formations between the unlike molecules of mixtures than those between the like molecules of the pure components. The magnitude of the excess molar volumes of the binary mixtures of 2-methoxyethanol and the aliphatic amines were in the order TBA > TEA > DEA > HEA. For the two aromatic amines, the magnitudes were in the order BLA > ANL. For binary mixtures of the amines and 2-ethoxyethanol, the magnitudes were in the order DEA > TEA > TBA > HEA at compositions where the mole fraction of 2-EtO-EtOH was ≤0.5 and TBA > TEA > DEA > HEA above 0.5 mole fraction of 2-EtO-EtOH.
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