Please use this identifier to cite or link to this item: http://srd.pgasa.dp.ua:8080/xmlui/handle/123456789/3105
Title: Electrochemical processes modeling and sensing upon dirac potentiostatic excitation
Other Titles: Моделирование электрохимических процессов потенциометрического сенсора при воздействии импульса дирака
Electrochemical processes modeling and sensing upon dirac potentiostatic excitation
Authors: Stevic, Z.
Стевич, З.
Стевич, З.
Rajcic-Vujasinovic, M.
Райчич-Вуясинович, М.
Райчич-Вуясинович, М.
Radovanovic, I.
Радованович, И.
Радованович, И.
Keywords: tical model
computer simulation
pulse excitation
electrochemical sensing
математическая модель
компьютерное моделирование
импульсное возбуждение
электрохимический сенсор
математична модель
комп’ютерне моделювання
імпульсне збудження
електрохімічний сенсор
Issue Date: Nov-2015
Citation: Stevic Z. Electrochemical processes modeling and sensing upon dirac potentiostatic excitation / Z. Stevic, M. Rajcic-Vujasinovic, I, Radovanovic // Строительство, материаловедение, машиностроение : сб. науч. тр. / Приднепр. гос. акад. стр-ва и архитектуры. – Днепр, 2015. – Вып. 86. – С. 108-112. – (Компьютерные системы и информационные технологии в образовании, науке и управлении).
Abstract: EN: Modeling of the processes at the electrolyte–electrode interface by the application of electrical excitations is of great importance in electrochemistry. Straightforward and simple estimation of the parameters of double layer and charge transfer processes allows optimization, while increasing demand for the analysis of complex processes requires improvement of existing methods and establishment of new ones. Based on previous studies of electrochemical behavior of copper sulfide minerals, an electric analog is introduced and also a mathematical model is derived for potentiostaticexcitation of these systems by a Dirac pulse. The obtained analytical results are compared to experimental data and to the dataobtained by computer simulation. A computer system for pulse generation and the monitoring of the response is developed in the LabVIEW programming environment, and applied to real systems. High matching level between the model and the results is achieved by the proper choice of model parameters, which confirmed the proposed model and enabled possible further research within the fast and simple experiments with low number of experimental runs.
URI: http://srd.pgasa.dp.ua:8080/xmlui/handle/123456789/3105
Appears in Collections:Вып. 86

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