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Thermodynamic and Molecular Dielectric Relaxation Studies of Polar-Polar Binary Mixtures Using Time Domain Reflectometry Technique

机译:时域反射法研究极性-极性二元混合物的热力学和分子介电弛豫

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摘要

The complex dielectric spectra of nitrobenzene, 2-butanol and their binary mixtures were measured in the frequency range of 10 MHz-20 GHz at different temperatures using Time Domain Reflectometry. The static permittivities and relaxation times were extracted from the complex dielectric spectra of the pure compounds and binary mixtures by fitting to the Debye model using the least-squares fitting method. The derived static permittivity (epsilon (0)) and dielectric relaxation time (tau (0)) values were used to calculate various dielectric parameters including the excess dielectric constant, effective Kirkwood correlation factor, excess inverse relaxation time and thermodynamic parameters. Excess dielectric parameters were fitted with the Redlich-Kister type polynomial equation. The result from dielectric analyses confirms the formation of a heterogeneous complex structure by association of unlike molecules. This hetero-molecule interactions produce a electric field in the mixtures and, as a result, the effective dipoles rotate faster. Molecular rotation and dipole reorientation motions in these complex system are discussed in terms of the molar activation entropy and enthalpy. Additionally, the hydrogen bond interaction between solute and solvent were confirmed by FT-IR spectral analysis.
机译:使用时域反射仪在不同温度下于10 MHz-20 GHz的频率范围内测量硝基苯,2-丁醇及其二元混合物的复介电谱。通过使用最小二乘拟合法拟合Debye模型,从纯化合物和二元混合物的复介电谱中提取静态电容率和弛豫时间。导出的静态介电常数(ε(0))和介电弛豫时间(tau(0))值用于计算各种介电参数,包括过量介电常数,有效的柯克伍德相关因子,过量逆松弛时间和热力学参数。多余的介电参数用Redlich-Kister型多项式方程拟合。介电分析的结果通过不同分子的缔合证实了异质复合结构的形成。这种杂分子相互作用在混合物中产生电场,结果,有效偶极子旋转得更快。从摩尔活化熵和焓的角度讨论了这些复杂系统中的分子旋转和偶极子重取向运动。另外,通过FT-IR光谱分析证实了溶质与溶剂之间的氢键相互作用。

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