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Zastosowanie wybranych polimerów elektroprzewodzących do wytwarzania aktywnych materiałów i komponentów obuwniczych

Identyfikatory
Warianty tytułu
EN
Application of selected electronically conducting polymers for footwear active materials and components manufacture
Języki publikacji
PL
Abstrakty
EN
Conducting polymers show interesting properties of electric conductivity on level of semiconductors and the metals. Nanocompositks of polymers with metal give new possibilities of applications in electronics and to production of active materials and components for shoe industry. We studied laminar connecions of seleceted piezopolymers with metals and conducting polymers in order to obtain of polymers to production of prototype sensors of pressures, temperature and moisture to monitoring the microclimate of interior of footwear. Moreover, interest of conducting polymers grows rapidly because of their application to antistatic finishes of shoe materials and to production of active materials and components to producion of "intelligent" footwear.
Rocznik
Tom
Strony
49--51
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
autor
  • Zakład Zaawansowanych Technologii w Centralnym Laboratorium Przemysłu Obuwniczego w Krakowie
Bibliografia
  • 1. Klimiec E., Zaraska W., Zaraska K., Gąsiorski K. R., Sadowski T., Pajda M., Elektroaktywne polimery - badanie właściwości piezoelektrycznych, Elektronika 12, 2006, 11.
  • 2. Stolka M. I., Chilton J. A., Goosey M. T., Special Polymers for Electronics and Optoelectronics, Chapman and Hall, London, 1995, 284
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  • 8. Gu G., Burrows P.E., Venkatesh S., Forrest S. R., Thompson M. E., Vacuum-deposited, nonpolymeric flexible organic light-emitting devices, Opt. Lett, 22, 1997, 172.
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  • 10. Hide F., Diaz-Garcia M.A., Schwartz B.J., Andersson M.R., Pei Q., Heeger A.J., Science, 273, 1996, 1833.
  • 11. Hide F., Schwartz B. J., Diaz-Garcia M. A., Heeger A. J., Conjugated polymers as solid-state laser materials ,Synth. Met., 91, 1997, 35.
  • 12. Pope M., Swenberg C. E., Electronic Processes in Organic Crystals and Polymers, New York, Oxford University Press, 1999, 1182.
  • 13. Kasap S. O., Optoelectronics and Photonics - Principles and Practices, New Jersey, Prentice-Hall, Inc., 2001, 257.
  • 14. Wagner J., Pielichowski J., Hinsch A., Pielichowski K., Bogdał D., Pajda M., Kurek S., Burczyk A., New carbazole-based polymers for dye solar cells with hole conducting polymer - Synth. Met. -146, 2004, 159.
  • 15. Wagner J., Pajda M., Hinsch A., Pielichowski K., Kurek S., Pielichowski J., Bogdał D., Energy Levels of Carbazole-Based Polymers for the Use In Dye Solar Cells with p-Conducting Polymers, Proceedings of 1st International Seminar Modern Polymeric Materials for Environmental Applications, WNT TEZA Kraków 2004,149.
  • 16. Wagner J., Pajda M., Pielichowski K., Pielichowski J., Bogdał D., Hinsch A., A New Carbazole-Based Ruthenium Complex Serving as a Dye Solar Cells with p-Conducting Polymers, Proceedings of lst International Seminar Modern Polymeric Materials for Environmental Applications, WNT TEZA Kraków 2004,153.
  • 17. Higuchi M., Ikeda I., Hirao T., A Novel Synthetic Metal Catalytic System, J. Org. Chem., 1997, 62, 1072.
  • 18. Pielichowski K., Kinetic analysis of the thermal decomposition of polyaniline, Solid State Ionics, 1997, 104, 123.
  • 19. Kang E. T., Neoh K. G., Tan K. I., Polyaniline: A polymer with many interesting intrinsic redox states, Prog. Polym. Sci., 1998, 23, 277.
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  • 21. Strack H. C. Empowering High Tech Materials Technical Information BAYTRONP. Formulation Guide, Niemcy, 2005.
  • 22. Sapp S., Luebben S., Chang E., Organic-Soluble Interisically Conductig Polymers Based on Poly(3,4-ethylenedioxythiophene, TDA Research Inc., USA, 2005.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS1-0028-0019
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