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J N Twist

Publications and source records attributed to J N Twist.

2 recordsLinked to original sources

A model for alcohol-enhanced permeation through polydimethylsiloxane membranes.

In this study the influence of paraben concentration on flux from solution in 1-propanol through polydimethylsiloxane membranes was investigated. Alcohol was sorbed by the polymer membrane leading to changes in membrane dimensions and increased membrane capacity to contain paraben (partition coefficient). Diffusion coefficients were not significantly influenced by alcohol sorption. Flux was increased 5-30 fold over nonimbibed donors such as water and polyols. An increase in paraben concentration reduced alcohol activity, its uptake by the membrane, and consequently the partition coefficient of paraben. As a result, flux increased with paraben concentration, reached a peak, and then declined. Maximal membrane concentration involves a trade-off between alcohol-membrane interaction (solvent activity) and paraben concentration, and occurred at paraben concentrations in the range of 1.3 to 1.4 mmol/g. At equimolar concentrations, flux was highest for methylparaben and declined as the series was ascended. Differences in flux between parabens at a specified molar concentration were due only to differences in diffusivity.

1-Propanol↗

Membrane-solvent-solute interaction in a model permeation system.

In this study, methyl- and propylparaben flux from various alcohol donors through polydimethylsiloxane membranes was investigated. Flux from saturated alcohol vehicles was markedly increased relative to water and glycol systems. The uptake of neat alcohol, a measure of solvent membrane interaction, gave a good rank order correlation to the flux data for a particular paraben. The major influence of the alcohols was an increase in membrane solubility of paraben, with a smaller effect on the diffusion coefficient. High paraben donor solubility indirectly reduced the solvent-membrane interaction leading to attenuated flux. Paraben membrane solubility was influenced by the amount of alcohol sorbed from saturated systems and the affinity of the paraben for the alcohol. This conforms to the concept of imbibed alcohol molecules being organized into clusters. The alteration in barrier properties of the membrane was found to require the presence of sorbed alcohol and was reversible upon removal of the solvent.

Alcohols↗