氯化胆碱
化学
水溶液
深共晶溶剂
共晶体系
摩尔体积
粘度
大气温度范围
溶剂
热力学
体积热力学
分析化学(期刊)
有机化学
物理
合金
作者
Anita Yadav,Shruti Trivedi,Rewa Rai,Siddharth Pandey
标识
DOI:10.1016/j.fluid.2014.01.028
摘要
Deep eutectic solvents (DESs) are emerging as one of the most promising environmentally benign and cost-effective alternatives to the conventional organic solvents. Many common DESs are readily miscible with water. Aqueous mixtures of DESs have potential to afford modified properties for specific applications. Densities and dynamic viscosities of a common and popular DES composed of choline chloride and glycerol in 1:2 mole ratio, named glyceline, and its aqueous mixtures in the temperature range 283.15–363.15 K are reported. Decrease in density with increasing temperature is found to follow a quadratic expression. Excess molar volumes of the aqueous mixtures of glyceline are found to be negative and significant at all temperatures and compositions. Absolute excess molar volume is found to decrease as the temperature is increased from 283.15 K to 323.15 K. For temperature above 323.15 K, the excess molar volume does not change much with further increase in temperature till 363.15 K. Temperature dependence of dynamic viscosity of aqueous mixtures of glyceline in the temperature range 283.15–363.15 K at all compositions is found to be better described by a Vogel–Fulcher–Tamman (VFT) model. Excess logarithmic viscosities for aqueous mixtures of glyceline are found to be positive at all temperatures and compositions investigated. The results highlight relatively stronger interactions, preferably H-bonding type, between water and glyceline, as compared to those among water and among glyceline molecules, respectively. Facile interstitial accommodation of water within H-bonded glyceline network also appears to contribute to the experimental observations.
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