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首页> 外文期刊>Fluid Phase Equilibria >Phase behaviour of 1-hexyloxymethyl-3-methyl-imidazolium and 1,3-dihexyloxymethyl-imidazolium based ionic liquids with alcohols, water, ketones and hydrocarbons: The effect of cation and anion on solubility
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Phase behaviour of 1-hexyloxymethyl-3-methyl-imidazolium and 1,3-dihexyloxymethyl-imidazolium based ionic liquids with alcohols, water, ketones and hydrocarbons: The effect of cation and anion on solubility

机译:1-己氧基甲基-3-甲基咪唑鎓和1,3-二己氧基甲基咪唑鎓离子液体与醇,水,酮和烃的相行为:阳离子和阴离子对溶解度的影响

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摘要

The liquid-liquid equilibrium (LLE), or solid-liquid equilibrium (SLE) of more than 20 binary systems containing 1-hexyloxymethyl-3methyl-imidazolium bis(trifluoromethyl sulfonyl)-imide [C6H13OCH2MIM] [Tf2N] with alcohol (butan-1-ol, or hexan-1-ol, or octan-1-ol), water and ketone (3-pentanone, or cyclopentanone) and of 1-hexyloxymethyl-3-methyl-imidazoliumtetrafluoroborate [C6H13OCH2MIM][BF4] with alcohol (methanol, or ethanol, or butan-1-ol, or hexan-1-ol, or octan-1-ol), water and ketone (3-pentanone, or cyclopentanone) have been measured. The solubility of dialkoxy-imidazolium salts: (1) 1,3-dihexyloxymethyl-imidazoliumbis(trifluoromethylsulfonyl)-imide [(C6H13OCH2)2IM][Tf2N] in alcohol (butan-1-ol, or hexan-1-ol, or octan-1-ol, or decan-1-ol), in water and hydrocarbon (benzene, hexane and cyclohexane); (2) 1,3-dihexyloxymethyl-imidazolium tetrafluoroborate [(C6H13OCH2)(2)IM][BF4] in alcohol (hexan-1-ol, or octan-1-ol, or decan-1-ol) and water have been measured. Measurements were carried out by using a dynamic method from T = 275 K to the boiling point of the solvent. In this work a systematic study of the impact of different factors on the phase behaviour of hexyloxy-imidazolium-based ionic liquids with polar and nonpolar solvents has been presented. Most of the examined systems showed immiscibility in the liquid phase with an upper critical solution temperature (UCST), or complete solubility of the ionic liquid at room temperature in many solvents. An increase in the alkyl chain length of alcohol resulted in an increase in the UCST. The choice of anion was shown to have large impact on the solubility: by changing the anion [Tf2N](-) to [BF4](-), the solubility dramatically decreased and the UCST increased. By contrast, increasing hydrogen bonding opportunities with the solvent by replacing a methyl group with the second alkoxy-group, on the imidazolium ring results in an increase of the solubility. The paper includes also a thermophysical basic characterization of pure ionic liquids obtained via differential scanning calorimetry (TG/DSC), temperatures of decomposition and melting, enthalpies of fusion, enthalpies of solid-solid phase transitions and temperatures of the glass transition. The experimental results of LLE and SLE have been correlated using the NRTL, or Wilson equations. The average root-mean square deviation of the equilibrium mole fraction for all the LLE data was 0.010 and average mean square deviation of temperature for SLE was 1.06 K. From the solubility results the partition coefficient of ionic liquids in binary system octan-1-ol/water mixtures has been calculated. Experimental partition coefficients (log P) at the temperature 298.15 K were negative. (c) 2006 Elsevier B.V. All rights reserved.
机译:20多个包含1-己氧基甲基-3甲基-咪唑双(三氟甲基磺酰基)-酰亚胺[C6H13OCH2MIM] [Tf2N]和醇(丁烷1)的20多种二元体系的液-液平衡(LLE)或固-液平衡(SLE) -ol或hexa-1--1-ol或octan-1-ol),水和酮(3-戊酮或环戊酮)和1-己氧基甲基-3-甲基咪唑四氟硼酸酯[C6H13OCH2MIM] [BF4]与乙醇(甲醇)或乙醇,丁烷-1-醇或己-1-醇或辛烷-1-醇,水和酮(3-戊酮或环戊酮)已被测量。二烷氧基咪唑鎓盐的溶解度:(1)1,3-二己基氧基甲基咪唑鎓双(三氟甲基磺酰基)-酰亚胺[(C6H13OCH2)2IM] [Tf2N]在乙醇(丁烷-1-醇或己-1-醇或辛烷中)的溶解度在水和碳氢化合物(苯,己烷和环己烷)中的-1-ol或decan-1-ol; (2)在乙醇(己醇-1-醇,辛烷-1-醇或癸烷-1-醇)和水中的1,3-二己氧基甲基咪唑四氟硼酸酯[(C6H13OCH2)(2)IM] [BF4]测量。通过使用动态方法从T = 275 K到溶剂的沸点进行测量。在这项工作中,系统研究了不同因素对己氧基咪唑鎓基离子液体与极性和非极性溶剂的相行为的影响。大多数检查的系统在较高的临界溶液温度(UCST)下都无法在液相中混溶,或者在室温下离子液体在许多溶剂中完全溶解。醇的烷基链长度的增加导致UCST的增加。阴离子的选择对溶解度有很大影响:通过将阴离子[Tf2N](-)更改为[BF4](-),溶解度显着降低,而UCST增加。相反,通过在咪唑鎓环上用第二个烷氧基取代甲基来增加与溶剂的氢键合机会导致溶解度的增加。本文还包括通过差示扫描量热法(TG / DSC)获得的纯离子液体的热物理基本特征,分解和熔融温度,熔融焓,固-固相变焓和玻璃化转变温度。 LLE和SLE的实验结果已使用NRTL或Wilson方程进行了关联。所有LLE数据的平衡摩尔分数的平均均方根偏差为0.010,SLE的温度的平均均方差为1.06K。从溶解度结果看,离子液体在二元体系octan-1-ol中的分配系数/水混合物已计算。在298.15 K温度下的实验分配系数(log P)为负。 (c)2006 Elsevier B.V.保留所有权利。

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