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Study on Combined Optical and Electrochemical Analysis Using Indium‐tin‐oxide‐coated Optical Fiber Sensor
Authors:Mateusz mietana  Pawe&#x; Niedzia&#x;kowski  Wioleta Bia&#x;obrzeska  Dariusz Burnat  Petr Sezemsky  Marcin Koba  Vitezslav Stranak  Katarzyna Siuzdak  Tadeusz Ossowski  Robert Bogdanowicz
Institution:Mateusz ?mietana,Pawe? Niedzia?kowski,Wioleta Bia?obrzeska,Dariusz Burnat,Petr Sezemsky,Marcin Koba,Vitezslav Stranak,Katarzyna Siuzdak,Tadeusz Ossowski,Robert Bogdanowicz
Abstract:In this work an optical fiber sensor, where a lossy‐mode resonance (LMR) effect was obtained due to indium tin oxide (ITO) thin overlay, has been simultaneously applied as a working electrode in a 3‐electrode cyclic voltammetry electrochemical setup. Since LMR conditions highly depend on refractive index of a surrounding medium, an LMR‐based sensor was applied for optical investigations of electrolyte's properties at the ITO surface. We have found that the optical response of the sensor highly depends on the applied potential and its changes, as well as the properties of the investigated electrolyte, i. e., its composition and presence of a redox probe. Both optical and electrochemical response of the ITO‐LMR sensor to various concentrations of phosphate‐buffered saline (PBS), NaCl and Na2SO4, as well as scan rate were investigated and discussed. We have found that the responses in optical and electrical domains differ significantly and may deliver supplementary information about the investigated analyte.
Keywords:Cyclic voltammetry  lossy-mode resonance (LMR)  optical fiber sensor  refractive index sensing  thin film  indium tin oxide (ITO)
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