Investigation of Various Types of Inverse Micelles in Nonpolar Liquids Using Transient Current Measurements

Transient current measurements are used to characterize a wide variety of charge carriers in nonpolar liquids. The transient current method allows us to obtain both the concentration and mobility of charge carriers and therefore also the hydrodynamic radius using Stokes’ law. In this article, five d...

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Veröffentlicht in:Langmuir 2014-10, Vol.30 (41), p.12138-12143
Hauptverfasser: Karvar, Masoumeh, Strubbe, Filip, Beunis, Filip, Kemp, Roger, Smith, Nathan, Goulding, Mark, Neyts, Kristiaan
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container_end_page 12143
container_issue 41
container_start_page 12138
container_title Langmuir
container_volume 30
creator Karvar, Masoumeh
Strubbe, Filip
Beunis, Filip
Kemp, Roger
Smith, Nathan
Goulding, Mark
Neyts, Kristiaan
description Transient current measurements are used to characterize a wide variety of charge carriers in nonpolar liquids. The transient current method allows us to obtain both the concentration and mobility of charge carriers and therefore also the hydrodynamic radius using Stokes’ law. In this article, five different surfactants in dodecane are investigated: OLOA11K, Solsperse13940, Span80, Span85, and AOT. We show that different types of currents are observed depending on the size of the inverse micelles. For large inverse micelles such as for OLOA11K, Solsperse13940, and Span80, the measurement of the transient current is straightforward because of the low steady-state current level. However, for small inverse micelles such as AOT and Span85, the current from the generation of charges is much larger such that high voltages, a small distance between the electrodes, and dielectric coatings on the electrodes are required to measure the signal related to the initially present charged inverse micelles. The estimated hydrodynamic radii of AOT and Span85, the two smallest inverse micelles, are in good agreement with the values reported in the literature. The comparison of the transient currents with simulations indicates that the dynamics of the charge transport are well-understood.
doi_str_mv 10.1021/la502287m
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title Investigation of Various Types of Inverse Micelles in Nonpolar Liquids Using Transient Current Measurements
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