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Thermal Analysis of the Dielectric Behavior of Complex Liquids

机译:复合液体介电行为的热分析

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The system investigated is a multicomponent liquid, macroscopically monophasic, consisting of water spherical droplets stabilized by a surfactant shell, with diameter in the nano meter range, dispersed in a continuous hydrocarbon phase (oil). The system is thermodynamically stable. The dielectric properties of the above system were investigated at room temperature in the frequency range 1.6 KHz - 100 MHz, against the increase of the water concentration. The temperature dependence was studied by Thermally Stimulated Depolarization (TSD) by applying to the samples in the liquid state, a very low intensity static electric field. Therefore the specific effect of the temperature change was evidenced by Differential Scanning micro Calorimetry (DSC), by studying the basic thermodynamics of the system. Both the freezing exotherms and the melting endotherms were analyzed by DSC. Last but not least, the percolative behavior, typical of such systems when the water globule concentration reaches a given value, was considered both from the dielectric and the thermodynamic point of view.
机译:研究的系统是一种多组分液体,宏观单相单位,由用表面活性剂壳稳定的水球形液滴,其直径在纳米仪表范围内,分散在连续的烃相(油)中。该系统具有热力学稳定。在室温下在频率范围为1.6 kHz - 100MHz的室温下研究了上述系统的介电性能,抵抗水浓度的增加。通过施加到液态中的样品,非常低强度的静电场来研究温度依赖性。因此,通过研究系统的基本热力学,通过差示扫描微量热量测定法(DSC)证明了温度变化的具体效果。通过DSC分析冷冻放热和熔化吸热。最后但尤其是渗透行为,典型的这种系统当水甘油浓度达到给定值时,被认为是从电介质和热力学的观点来看。

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