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Dielectric relaxation study of m-Fluoroaniline and methanol mixture using time domain reflectometry

机译:时域反射法研究间氟苯胺和甲醇混合物的介电弛豫

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The dielectric relaxation studies of liquids and liquid mixtures is a tool to understand intermolecular interaction along with molecular dynamics. Although m-Fluoroaniline (MFA) has higher dipole moment than methanol (MT) has dielectric constant less than that of methanol. H-bonds appear in methanol but not in m-Fluoroaniline. The dielectric behavior, dielectric relaxation mechanism of these pure liquids and their binary mixtures helps to understand nature of interactions between dipoles and effects of molecular bonding. Higher dielectric constant and relaxation time of of pure methanol compared to those of m-Fluoroaniline are due to presence of H-bonding and parallel alignment of electric dipoles. In pure m-Fluoroaniline spatial correlation between molecules appear only through dipole-dipole interactions. To study these aspects the Time domain Reflectometry technique has been used to obtain complex dielectric spectra of binary mixture of MT and MFA in the frequency range of 10 MHz to 10 GHz at various temperatures the results are presented
机译:液体和液体混合物的介电弛豫研究是了解分子间相互作用以及分子动力学的工具。尽管间氟苯胺(MFA)具有比甲醇(MT)高的偶极矩,但介电常数小于甲醇。 H键出现在甲醇中,而不存在于间氟苯胺中。这些纯液体及其二元混合物的介电行为,介电弛豫机理有助于理解偶极之间相互作用的性质以及分子键合的影响。与间氟苯胺相比,纯甲醇的介电常数和弛豫时间更高,这归因于存在H键和电偶极子平行排列。在纯的间氟苯胺中,分子之间的空间相关性仅通过偶极-偶极相互作用出现。为了研究这些方面,已使用时域反射仪技术获得了在各种温度下10 MHz至10 GHz频率范围内MT和MFA的二元混合物的复杂介电谱,并给出了结果。

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