Abstract
Thick conducting films based on conducting polymer are characterized by DC conductivity and noise in temperature range 10 to 300 K. Conducting polymers could be used e.g. for the top electrode (cathode) in the solid tantalum or niobium capacitors. On the conducting polymer layer the top layer of carbon/graphite and/or silver polymer based pastes is applied in the capacitor technology. Our samples structure consists of conducting polymer layers with semiconductor conductivity applied on the alumina substrate of the size 50 x 4 mm2. Contact electrodes are prepared either from two layers - carbon/graphite paste (lower one) and silver paste (upper one), or by silver paste layer only. We are measuring DC conductivity of the structures, which is of the order of 1 mS at the room temperature and decreases with decreasing temperature for both types of contact technologies. For the evaluation of the contact technology two testing methods are proposed. The first is the measurement of the potential distribution on the sample surface, which is able to measureinterface resistance between two layers. The second one is based on the evaluation of the low frequency noise measurements. Additional method sensitive to the material structure is Electro-Ultrasonic Spectroscopy (EUS). The correlation of the noise spectroscopy and EUS will be given.
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- Category:
- Conference activity
- Type:
- publikacja w wydawnictwie zbiorowym recenzowanym (także w materiałach konferencyjnych)
- Title of issue:
- 35th International Microelectronics and Packaging IMAPS - IEEE CPMT Poland Conference, September 21-24, 2011 Gdansk-Sobieszewo strony 59 - 66
- Language:
- English
- Publication year:
- 2011
- Bibliographic description:
- Sedlakova V., Majzner J., Sedlak P., Kopecky M., Sikula J., Hasse L., Szewczyk A.: Noise and Electro-Ultrasonic Spectroscopy of Conducting PolymerThick Films// 35th International Microelectronics and Packaging IMAPS - IEEE CPMT Poland Conference, September 21-24, 2011 Gdansk-Sobieszewo/ ed. eds. P. Jasiński, G. Jasiński. - Gdansk University of Technology, Faculty of Electronics, Telecommunications and Informatics. Gdańsk: , 2011, s.59-66
- Verified by:
- Gdańsk University of Technology
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