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Dielectric relaxation of binary polar liquid mixture measured in benzene at 10 GHz frequency

机译:在10 GHz频率下在苯中测量的二元极性液体混合物的介电弛豫

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摘要

The dielectric relaxation times τ jk ’s and dipole moments μ jk ’s of the binary (jk) polar liquid mixture of N,N-dimethyl acetamide (DMA) and acetone (Ac) dissolved in benzene (i) are estimated from the measured real σ′ ijk and imaginary σ″ ijk parts of complex high frequency conductivity σ* ijk of the solution for different weight fractions w jk ’s of 0.0, 0.3, 0.5, 0.7 and 1.0 mole fractions x j of Ac and temperatures (25, 30, 35 and 40°C) respectively under 9.88 GHz electric field. τ jk ’s are obtained from the ratio of slopes of σ″ ijk -w jk and σ′ ijk -w jk curves at w jk → 0 as well as linear slope of σ″ ijk -σ′ ijk curves of the existing method (Murthy et al, 1989) in order to eliminate polarpolar interaction in the latter case. The calculated τ’s are in excellent agreement with the reported τ’s due to Gopalakrishna’s method. μ jk ’s are also estimated from slopes β’s of total conductivity σ ijk -w jk curves at w jk → 0 and the values agree well with the reported μ’s from G.K. method. The variation of τ jk ’s and μ jk ’s with x j of Ac reveals that solute-solute molecular association occurs within 0.0–0.3x j of Ac beyond which solute-solvent molecular association is predicted. The theoretical dipole moments μ theo’s are calculated from bond angles and bond moments to have exact μ’s only to show the presence of inductive, mesomeric and electromeric effects in the substituent polar groups. The thermodynamic energy parameters are estimated from ln(τ jk T) against 1/T linear curve from Eyring’s rate theory to know the molecular dynamics of the system and to establish the fact that the mixture obeys the Debye-Smyth relaxation mechanism.
机译:N,N-二甲基乙酰胺(DMA)和丙酮的二元(jk)极性液体混合物的介电弛豫时间τ jk 's和偶极矩μ jk 从实测的σ' ijk 和虚数高频电导率σ* ijk <的假想σ'' ijk 估算溶解在苯(i)中的(Ac) / sub>的不同重量分数w jk 分别为0.0、0.3、0.5、0.7和1.0摩尔分数x x j 的Ac和温度(25,30 ,35和40°C)分别在9.88 GHz电场下。 τ jk 是从σ″ ijk -w jk 和σ′ ijk 的斜率得到的。 -w jk 在w jk →0处的曲线以及σ'' ijk -σ′ ijk 的线性斜率现有方法的曲线(Murthy等,1989),以消除后一种情况下的极性相互作用。由于Gopalakrishna的方法,计算得出的τ与报告的τ高度吻合。 μ jk 也可以根据总电导率的斜率βσ估计。 jk →0,该值与GK报告的μ值非常吻合方法。 Ac的τ jk 和μ jk 随x j 的变化表明溶质-溶质分子缔合发生在0.0-0.3之间Ac的x j ,超出此范围可预测溶质-溶剂分子缔合。根据键角和键矩计算出理论偶极矩μ theo ,使其具有精确的μ,仅表示取代基极性基团中存在感应,介观和电子效应。通过ln(τ jk T)相对于Eyring速率理论的1 / T线性曲线估算热力学能量参数,以了解系统的分子动力学并确定混合物服从Debye-史密斯放松机制。

著录项

  • 来源
    《Pramana》 |2008年第3期|543-552|共10页
  • 作者单位

    Department of Instrumentation Technology, Dr. Meghnad Saha Institute of Technology, P.O. Debhog, Purba Medinipur, 721 657, India;

    Department of Physics, Dr. Meghnad Saha Institute of Technology, P.O. Debhog, Purba Medinipur, 721 657, India;

    Department of Physics, Dr. Meghnad Saha Institute of Technology, P.O. Debhog, Purba Medinipur, 721 657, India;

    Department of Physics, Dr. Meghnad Saha Institute of Technology, P.O. Debhog, Purba Medinipur, 721 657, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Relaxation time; hf conductivity; dipole moment; solute; solute interaction;

    机译:休息时间;hf电导率;偶极矩;溶质;溶质相互作用;

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