首页> 外文期刊>The Journal of Chemical Thermodynamics >Effect of temperature on the aggregation behaviour and thermodynamic properties of surface active ionic liquid 1-decyl-3-methylimidazolium bromide in aqueous solutions: Surface tension, vapour pressure osmometery, conductivity, volumetric and compressibility study
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Effect of temperature on the aggregation behaviour and thermodynamic properties of surface active ionic liquid 1-decyl-3-methylimidazolium bromide in aqueous solutions: Surface tension, vapour pressure osmometery, conductivity, volumetric and compressibility study

机译:温度对表面活性离子液体1-癸基-3-甲基咪唑鎓溴化物在水溶液中的聚集行为和热力学性质的影响:表面张力,蒸气压渗透压法,电导率,体积和可压缩性研究

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The self-aggregation behaviour and thermodynamic properties of surface active ionic liquid (SAIL) 1-decyl-3-methylimidazolium bromide ([C(10)mim][Br]) in aqueous solution have been investigated by means of surface tension, vapour pressure osmometery, electrical conductivity, volumetric and compressibility measurements at different temperatures. The critical micelle concentrations (cmc) obtained from the different thermodynamic properties investigated show that the curves of cmc against temperature show a shallow minimum at about 298 K and an increasing trend at the higher temperature range. From the electrical conductivity measurements, the values of the degree of ionization of the counter ion on the micelles (alpha), thermodynamic properties of micellization (Delta G degrees(m), Delta H degrees(m), Delta S degrees(m)) and infinite dilution molar conductivity (Delta degrees(m)) for the SAIL investigated at different temperatures were obtained. The temperature dependency of infinite dilution partial molar properties (V degrees(m) and K Delta(m)), apparent molar properties at the critical micelle concentration (V-phi,V-cmc and K-phi,K-cmc), apparent molar properties in the micelle phase (V-phi(mic) and K-phi(mic)) and the change of apparent molar properties upon micellization (Delta V-phi,V-m and Delta K-phi,K-m) were derived from the experimental volumetric and compressibility values. The surface tension measurements provided a series of parameters, including surface tension at the cmc (gamma(cmc)), adsorption efficiency (pC(20)), effectiveness of surface tension reduction (Pi(cmc)), maximum surface excess concentration (Gamma(max)) and minimum surface area per molecule (A(min)) at interface of air/solution for the investigated SAIL at different temperatures. Finally, the osmotic properties of the binary mixture of [C(10)mim][Br] and water including the water activity, osmotic coefficient and vapour pressure were studied by using the vapour pressure osmometry. (C) 2016 Elsevier Ltd.
机译:通过表面张力,蒸气压研究了表面活性离子液体(SAIL)1-癸基-3-甲基咪唑鎓溴化物([C(10)mim] [Br])在水溶液中的自聚集行为和热力学性质。在不同温度下的渗透压,电导率,体积和可压缩性测量。从研究的不同热力学性质获得的临界胶束浓度(cmc)表明,cmc随温度变化的曲线在298 K处显示出最小值,而在较高温度范围内则呈增加趋势。从电导率测量中,胶束上抗衡离子的电离度值(alpha),胶束化的热力学性质(ΔG度(m),ΔH度(m),ΔS度(m))得到了在不同温度下研究的SAIL的无限稀释摩尔电导率(Delta度(m))。无限稀释的部分摩尔特性(V度(m)和K Delta(m)),在临界胶束浓度下的表观摩尔特性(V-phi,V-cmc和K-phi,K-cmc),表观的温度依赖性胶束相的摩尔特性(V-phi(mic)和K-phi(mic))以及胶束化后的表观摩尔特性的变化(Delta V-phi,Vm和Delta K-phi,Km)来自实验体积和可压缩性值。表面张力测量提供了一系列参数,包括在cmc处的表面张力(gamma(cmc)),吸附效率(pC(20)),表面张力降低的效率(Pi(cmc)),最大表面过量浓度(Gamma) (max)和在不同温度下研究的SAIL在空气/溶液界面的每分子最小表面积(A(min))。最后,利用蒸气压渗透法研究了[C(10)mim] [Br]和水的二元混合物的渗透性能,包括水活度,渗透系数和蒸气​​压。 (C)2016爱思唯尔有限公司

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