Issue 0, 1973

Dielectric relaxation in non-aqueous solutions. Part 4.—Solutions of tri(n-butyl)ammonium picrate in benzene

Abstract

The dielectric relaxation times (τ) of solutions of tri(n-butyl)ammonium picrate in benzene have been found to increase linearly with increasing concentration of salt, although when the temperature is raised the slope (∂τ/c)T is reduced. Limiting values of τ obtained by extrapolation to infinite dilution are similar in magnitude to the reduced relaxation times τ* defined by the relation τ*=τ(ε+ 2)/(εs+ 2), where εs and ε are the low and high frequency limiting permittivities of the solution. Apparent enthalpies of activation also increase with increasing concentration, while the corresponding pre-exponential factors decrease with increasing concentration. The viscosity of the solution has been found to be a quadratic function of concentration.

From these observations, it has been concluded that the concentration dependence of the experimental relaxation times is due to electrostatic dipole-dipole interactions between individual ion pairs. Density data, from which the partial molar volume of the dissolved salt has been calculated, are also included.

Article information

Article type
Paper

J. Chem. Soc., Faraday Trans. 2, 1973,69, 315-321

Dielectric relaxation in non-aqueous solutions. Part 4.—Solutions of tri(n-butyl)ammonium picrate in benzene

E. A. S. Cavell and M. A. Sheikh, J. Chem. Soc., Faraday Trans. 2, 1973, 69, 315 DOI: 10.1039/F29736900315

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