National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Characterization of working electrodes of electrochemical sensors modified by carbon nanomaterials
Vančík, Silvester ; Majzlíková, Petra (referee) ; Prášek, Jan (advisor)
This bachelor thesis deals with electrochemical detection of substances using screen-printed electrochemical sensors. The theoretical part describes thick film technology, sensors, selected parts of electrochemistry, voltammetry and carbon nanomaterials. The practical part includes the modification of standard screen-printed electrode by oxygen plasma and spray-coated carbon nanomaterials and its experimental comparison using cyclic voltammetry and scanning electron microscopy. The measured values were processed and evaluated numerically and graphically. In comparison with standard working electrode, the current responses of both electrodes were improved significantly.
Effect of plasma oxidation of carbon working electrode on its electrochemical response
Koporec, Lukáš ; Prášek, Jan (referee) ; Majzlíková, Petra (advisor)
This thesis is focused on the effect of plasmatic oxidation of carbon working electrode on its electrochemical response. In the theoretical part, the thesis describes thick film technology, working carbon electrodes, cyclic voltammetry, contact angle measurement and plasma. Experimental part is dedicated to characterization of plasma modified electrode. Results are compare with unmodified electrodes.
Characterization of working electrodes of electrochemical sensors modified by carbon nanomaterials
Vančík, Silvester ; Majzlíková, Petra (referee) ; Prášek, Jan (advisor)
This bachelor thesis deals with electrochemical detection of substances using screen-printed electrochemical sensors. The theoretical part describes thick film technology, sensors, selected parts of electrochemistry, voltammetry and carbon nanomaterials. The practical part includes the modification of standard screen-printed electrode by oxygen plasma and spray-coated carbon nanomaterials and its experimental comparison using cyclic voltammetry and scanning electron microscopy. The measured values were processed and evaluated numerically and graphically. In comparison with standard working electrode, the current responses of both electrodes were improved significantly.
Effect of plasma oxidation of carbon working electrode on its electrochemical response
Koporec, Lukáš ; Prášek, Jan (referee) ; Majzlíková, Petra (advisor)
This thesis is focused on the effect of plasmatic oxidation of carbon working electrode on its electrochemical response. In the theoretical part, the thesis describes thick film technology, working carbon electrodes, cyclic voltammetry, contact angle measurement and plasma. Experimental part is dedicated to characterization of plasma modified electrode. Results are compare with unmodified electrodes.
Determination of herbicide dinoseb with amalgam and carbon electrodes
Fischer, J. ; Barek, J. ; Pecková, K. ; Zima, J. ; Kücükkolbasi, S. ; Ersöz, M. ; Kara, H. ; Josypčuk, Bohdan ; Navrátil, Tomáš
Dinoseb, systematically 2-(1-methylpropyl)-4,6-dinitro-phenol, is phenolic, commonly used herbicide and insecticide. Dinoseb has two very easy reducible nitro-groups in its structure and one electrochemically oxidizable hydroxy group. Differential pulse voltammetry was applied for its determination in water. The nitro group reduction was used for voltammetric determination with hanging mercury electrode (HMDE), mercury film electrode (MFE) and modified carbon paste electrode (MCPE) and carbon paste electrode (CPE) as well as meniscus modified silver solid amalgam electrode (m-AgSAE).
Working amalgam paste electrodes
Josypčuk, Bohdan
Working amalgam paste electrodes.

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