Calibrationless determination of electroactive species using chronoamperograms at collector segment of interdigitated microelectrode array

Jenčušová, P., Tomčík, P., Bustin, D., Rievaj, M. and Dovalovská, Z. Calibrationless determination of electroactive species using chronoamperograms at collector segment of interdigitated microelectrode array Chemical Papers, Vol.60, No. 3, 2006, 173-178

Document type: Článok z časopisu / Journal Article
Collection: Chemical papers  

Author(s) Jenčušová, P.
Tomčík, P.
Bustin, D.
Rievaj, M.
Dovalovská, Z.
Title Calibrationless determination of electroactive species using chronoamperograms at collector segment of interdigitated microelectrode array
Journal name Chemical Papers
Publication date 2006
Year available 2006
Volume number 60
Issue number 3
ISSN 0366-6352
Start page 173
End page 178
Place of publication Poland
Publisher Versita
Collection year 2006
Language english
Subject 250000 Chemical Sciences
250400 Analytical Chemistry
Abstract/Summary The possibility of calibrationless chronoamperometric determination is described using a pair of individually addressable and diffusion layers interacting segments of interdigitated microelectrode array (IDA). It utilizes dual voltammetric mode where the first segment is polarized with potential corresponding to the limiting current of determined species electrode reaction and the second segment is polarized with potential corresponding to the opposite electrode reaction limiting current. Time at which the current of the collector segment reaches one half of the steady state is hyperbolically dependent on the diffusion coefficient of analyte. The determination of diffusion coefficient allows direct calculation of bulk concentration avoiding calibration with a standard solution. The equipment for measuring of fast response of IDA arrays in dual mode has been developed using a bipotentiostat connected with A/D transducer. It allows less than 1 ms sampling period for ultrafast registration of chronoamperogram. The method was tested and validated with [Fe(CN)6]4−, [Ru(NH3)6]Cl3, and ferrocene model samples using various types of IDA arrays.
 
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