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Dielectric Studies of Glycine–Ethylene Glycol–Water Solutions Using Time Domain Reflectometry

机译:使用时域反射计的甘氨酸-乙二醇-水溶液介电研究

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Time domain reflectometry (TDR) has been used for dielectric relaxation measurements on the glycine–ethylene glycol–water ternary system (TDR) at 25, 30, 35, and 40°C in the frequency range from 10 MHz to 10 GHz. Glycine–ethylene glycol–water solutions are prepared with different concentrations of ethylene glycol (0, 5, 10, 15, 20, and 30%) and also for different glycine molar concentrations (0, 0.2, 0.4, 0.6, 0.8, and 1 M). The dielectric relaxation parameters are measured for aqueous glycine solutions also to compare the results with those for the glycine–ethylene glycol–water ternary system. For all the solutions considered, only one relaxation peak was observed in this frequency range. The complex permittivity spectra for the aqueous glycine solutions can be well described by the Cole–Davidson expression, whereas that for the ternary system can be well described by the Havriliak–Negami expression. The logarithm of the relaxation time log(τ) shows a nonlinear relation with the glycine molar concentration that implies a change in the relaxation mechanism with glycine concentration. The dielectric strength Δε increases with an increase in glycine molar concentration, whereas it decreases with an increase in ethylene glycol concentration.
机译:时域反射仪(TDR)已用于甘氨酸-乙二醇-水三元系统(TDR)在25、30、35和40°C且频率范围为10 MHz至10 GHz的介电弛豫测量。用不同浓度的乙二醇(0%,5%,10%,15%,20%和30%)以及不同的甘氨酸摩尔浓度(0、0.2、0.4、0.6、0.8和1)制备甘氨酸-乙二醇-水溶液M)。测量甘氨酸水溶液的介电弛豫参数,还将其与甘氨酸-乙二醇-水三元系统的结果进行比较。对于所有考虑的解决方案,在该频率范围内仅观察到一个弛豫峰。甘氨酸水溶液的复介电常数谱可以通过Cole-Davidson表达式很好地描述,而三元体系的复介电常数谱可以通过Havriliak-Negami表达式很好地描述。弛豫时间log(τ)的对数显示与甘氨酸摩尔浓度的非线性关系,这暗示弛豫机理随甘氨酸浓度的变化。介电强度Δε随着甘氨酸摩尔浓度的增加而增加,而随着乙二醇浓度的增加而降低。

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