Sirohi Archana, Upmanyu Arun, Kumar Pankaj, Dhiman Monika, Juglan Kailash Chandra, Singh Devinder Pal, Saxena Kuldeep K, Bhadauria Alok, Haque Siddiqui Md Irfanul
Chitkara University Institute of Engineering and Technology, Chitkara University, Punjab 140401, India.
Department of Physics, Lovely Faculty of Technology and Sciences, Lovely Professional University, Punjab 144001, India.
ACS Omega. 2024 Apr 22;9(17):19363-19377. doi: 10.1021/acsomega.4c00520. eCollection 2024 Apr 30.
Flory's statistical theory (FST) has been employed to estimate the ultrasonic velocity, density, internal pressure, and several important thermophysical parameters such as the energy of vaporization, the heat of vaporization, cohesive energy density, polarity index, and solubility for eight binary mixtures of ionic liquids and water within the temperature range of 288.15 to 308.15 K. The ionic liquids chosen for this investigation are [BMim][dca], [BMim][TfO], [BMpy][TfO], [BMpyr][dca], [BMpyr][TfO], [EEPy][ESO], [HMim][dca], and [MPy][MSO]. The predicted values of ultrasonic velocity and density show good agreement with the data reported in the literature. It endorses the applicability of FST to these binary mixtures. A comparative analysis of the internal pressure values () determined by using FST and the standard thermodynamic approach is also presented. The results obtained for using both approaches show good agreement. Besides, for the mixtures under study, the correlation between ultrasonic velocity, density, and surface tension has also been examined. The variation of thermophysical parameters with concentration and temperature changes has been utilized to explore the nature and strength of the solute-solvent interactions prevalent in these mixtures. It is pointed out that A-A-type interactions dominate over A-B-type interactions in water-rich regions of the mixtures.
弗洛里统计理论(FST)已被用于估算288.15至308.15 K温度范围内离子液体与水的八种二元混合物的超声速、密度、内压以及几个重要的热物理参数,如汽化能、汽化热、内聚能密度、极性指数和溶解度。本研究选用的离子液体为[BMim][dca]、[BMim][TfO]、[BMpy][TfO]、[BMpyr][dca]、[BMpyr][TfO]、[EEPy][ESO]、[HMim][dca]和[MPy][MSO]。超声速和密度的预测值与文献报道的数据吻合良好。这证实了FST对这些二元混合物的适用性。还对使用FST和标准热力学方法确定的内压值()进行了对比分析。两种方法得到的结果吻合良好。此外,对于所研究的混合物,还考察了超声速、密度和表面张力之间的相关性。利用热物理参数随浓度和温度的变化来探究这些混合物中普遍存在的溶质 - 溶剂相互作用的性质和强度。结果表明,在混合物的富水区域,A - A型相互作用比A - B型相互作用占主导地位。