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首页> 外文期刊>RSC Advances >Synthesis and characterization of 2 ',3 '-epoxy propyl-N-methyl-2-oxopyrrolidinium salicylate ionic liquid and study of its interaction with water or methanol
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Synthesis and characterization of 2 ',3 '-epoxy propyl-N-methyl-2-oxopyrrolidinium salicylate ionic liquid and study of its interaction with water or methanol

机译:2',3'-环氧丙基-N-甲基-2-氧吡咯烷基水杨酸酯离子液体的合成,表征及其与水或甲醇相互作用的研究

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Important physico-chemical properties of ionic liquids (ILs) can be manipulated by adjusting the nature of the cation or anion. These properties are exploited in applications such as organic synthesis, catalysis and electrochemical processes to mention a few. In this work, the novel pyrrolidone ionic liquid N-(2',3'-epoxypropyl)-N-methyl-2-oxopyrrolidinium salicylate [EPMpyr](+)[SAL](-) was synthesized using two steps and characterized. The temperature dependent density and speed of sound for ionic liquid, methanol, water, and their corresponding binary mixtures of {IL (1) + methanol or water (2)} were measured over the entire range of mole fractions at temperatures from T = (293.15 to 313.15) K in steps of 5 K, under atmospheric pressure. The calculated thermodynamic properties such as excess molar volume V-m(E), isentropic compressibility k(s), intermolecular free length L-f, and deviation in isentropic compressibility Delta k(s), were derived from the investigated density and speed of sound data. The resulting experimental data for excess molar volumes V-m(E), intermolecular free length L-f, and deviation in isentropic compressibility Delta k(s), were well fitted to the Redlich-Kister polynomial equation. The effect of temperature and concentration on thermophysical properties was also provided.
机译:可以通过调节阳离子或阴离子的性质来控制离子液体(ILs)的重要物理化学性质。这些性质在有机合成,催化和电化学过程等应用中得到了充分利用。在这项工作中,使用两个步骤合成了新型吡咯烷酮离子液体N-(2',3'-环氧丙基)-N-甲基-2-氧吡咯烷水杨酸酯[EPMpyr](+)[SAL](-)。在T =(T)的整个温度下,在整个摩尔分数范围内,测量了离子液体,甲醇,水及其{IL(1)+甲醇或水(2)}的相应二元混合物的温度依赖性密度和声速。 293.15至313.15),在大气压下以5 K为步长。计算出的热力学特性,例如过量的摩尔体积V-m(E),等熵可压缩性k(s),分子间自由长度L-f和等熵可压缩性Delta k(s)的偏差,是根据所研究的声音数据的密度和速度得出的。得到的过量摩尔体积V-m(E),分子间自由长度L-f和等熵可压缩性Delta k(s)的偏差的实验数据很好地拟合了Redlich-Kister多项式方程。还提供了温度和浓度对热物理性质的影响。

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