Complex and thermodynamic properties of polar liquids using time domain reflectometry in Microwave frequency

Shagufta Tabassum
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引用次数: 1

Abstract

The complex permittivity spectra and thermodynamic properties of 1,2-dichloroethane (DE) and n,n-dimethylformamide (DMF) polar liquids has been obtained at 15°C temperature in the frequency range of 10 MHz to 30 GHz by using time domain reflectometry technique for 11 different concentrations of the system. Time dependent data is processed to obtained complex reflection coefficient spectra *(ω). Complex permittivity spectra is obtained from bilinear callibration method and this spectra gives information regarding dielectric dispersion (ɛʹ) and dielectric absorption (ɛʺ), which indicates the purity of the liquid mixture. The modified Bruggeman model is also a parameter which may be used an indicator of liquid 1 and 2 interactions. In binary mixture of polar liquids, there is a change in the energy of the system. This change in energy can be interpreted with thermodynamic parameters such as free energy of activation (G), molar enthalpy of activation (H) and molar entropy of activation (S).
微波频率下用时域反射法研究极性液体的复杂性质和热力学性质
采用时域反射法测定了11种不同浓度的1,2-二氯乙烷(DE)和n,n-二甲基甲酰胺(DMF)极性液体在15℃温度下10 MHz ~ 30 GHz频率范围内的复介电常数谱和热力学性质。对时间相关数据进行处理,得到复反射系数谱*(ω)。采用双线性校准方法得到复介电常数谱,该谱给出了介质色散(ε′)和介质吸收(ε′′)的信息,反映了液体混合物的纯度。改进的Bruggeman模型也是一个参数,可以用来指示液体1和液体2的相互作用。在二元极性液体混合物中,系统的能量有变化。这种能量的变化可以用热力学参数来解释,如活化自由能(G)、摩尔活化焓(H)和摩尔活化熵(S)。
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