Electrolyte Effects On The Electrochemical Performance Of Microemulsions

ELECTROCHIMICA ACTA(2021)

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摘要
We report a study of the electrochemistry of Ferrocene (Fc) in a Tween (R) 20 (polyethylene glycol (20) sorbitan monolaurate) /1-butanol/ water/Toluene (TBWT) microemulsion system, focusing on the effects of electrolyte components. Resistance and conductivity measurements are used along with Cyclic Voltam-metry (CV) to characterize the effects of supporting electrolyte, such as Bu4NBF4 and KNO3, on the electrochemical performance and transport properties of Fc. With increasing Fc-containing oil phase concentration in the microemulsion, the observed peak current density fails to increase proportionately with the Fc concentration. Adding 0.05 m Bu4NBF4 in the oil phase significantly increases the current density, presumably by lowering the resistance of microemulsion and promoting the accessibility of Fc in the system. Moreover, increasing the aqueous phase supporting electrolyte from 0.5 m KNO3 to 1 m KNO3 does not exhibit an analogous effect. We discuss these results in the context of our working hypothesis for microemulsion organization and its implications for electron transfer to Fc. (C) 2021 Elsevier Ltd. All rights reserved.
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关键词
Microemulsion, Supporting electrolyte, Electrochemical performance, Conductivity
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