DocumentCode :
2505352
Title :
Testing of graphite paste properties for thick film sensors
Author :
Adamek, M. ; Prasek, Jan ; Krejci, J.
Author_Institution :
Dept. of Microelectron., FEEC BUT, Brno, Czech Republic
fYear :
2003
fDate :
8-11 May 2003
Firstpage :
344
Lastpage :
348
Abstract :
The miniature electrochemical sensors can be produced by thick film technology. The optimal properties of thick film electrode materials are main problems of sensors design. The optimization of graphite paste for TFT chemical sensor properties is discussed. The commercial TFT graphite pastes, which are used for common application, are cheap and easily producible, but they are not efficient for electrochemical measurement. These pastes have insufficient sensitivity and they have other bad properties. Graphite pastes, which were designed for special chemical analysis, are technically known, but these pastes are not workable by screen-printing. The goal of this work is first step in rheologic properties addition to graphite electrochemical pastes. This ensures the pastes printability that will enable the reproducible mass production. The graphite powder mixed with paraffin is the basic component of common chemical graphite pastes. There were examined different properties of these pastes in dependence on graphite powder and binding material content in this work. The measurement was made in standard electrochemical couple of potassium ferrocyanide-ferricyanide.
Keywords :
electrochemical electrodes; electrochemical sensors; graphite; materials testing; thick films; TFT chemical sensor; binding material; electrochemical measurement; graphite paste properties; graphite powder; miniature electrochemical sensors; optimal properties; pastes printability; potassium ferrocyanide-ferricyanide; reproducible mass production; rheologic properties; special chemical analysis; thick film sensors; thick film technology; Chemical analysis; Chemical sensors; Chemical technology; Electrodes; Powders; Rheology; Testing; Thick film sensors; Thick films; Thin film transistors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics Technology: Integrated Management of Electronic Materials Production, 2003. 26th International Spring Seminar on
Print_ISBN :
0-7803-8002-9
Type :
conf
DOI :
10.1109/ISSE.2003.1260547
Filename :
1260547
Link To Document :
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