Dielectric Properties of Dextran Gel Sephadex G-25 Dispersed in Aqueous Phases
- 1 December 1982
- journal article
- Published by IOP Publishing in Japanese Journal of Applied Physics
- Vol. 21 (12R) , 1762
- https://doi.org/10.1143/jjap.21.1762
Abstract
Dielectric relaxations were observed in beds of dextran gel beads preconditioned with different salt solutions and subsequently dispersed in deionized water in a frequency range of 10 kHz to 1 MHz. The relative permittivities and electrical conductivities of the gel beads were evaluated from the observed relaxations using the theory of interfacial polarization. The relative permittivities remained the same irrespective of the ion species in the salt solutions used for preconditioning, while the conductivities had values characteristic of the cation species in the respective salt solutions. A similar analysis was also carried out on a series of specimens with different concentrations of KCl in a continuous medium. The conductivity of the gel beads increased with the KCl concentration as expected from the theory of Donnan equilibrium.Keywords
This publication has 12 references indexed in Scilit:
- Evaluation of Relative Permittivity and Electrical Conductivity of Ion-Exchange Beads by Analysis of High-Frequency Dielectric RelaxationsJapanese Journal of Applied Physics, 1981
- Gel permeation chromatography (steric exclusion chromatography)Analytical Chemistry, 1978
- Dielectric properties of Sephadex and its water of hydrationThe Journal of Physical Chemistry, 1976
- Water adsorption and dielectric properties of lyophilized hemoglobinThe Journal of Physical Chemistry, 1968
- Dielectric Dispersion of Crystalline Powders of Amino Acids, Peptides, and Proteins1The Journal of Physical Chemistry, 1965
- Passive Electrical Properties of MicroorganismsBiophysical Journal, 1965
- Dielectric properties of protein powders with adsorbed waterTransactions of the Faraday Society, 1963
- A remark on the ?Theory of the dielectric dispersion due to the interfacial polarization?Colloid and Polymer Science, 1961
- Theory of the dielectric dispersion due to the interfacial polarization and its application to emulsionsColloid and Polymer Science, 1960
- Electric Moments of Molecules in LiquidsJournal of the American Chemical Society, 1936