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Applications of Reticulated Vitreous Carbon (RVC) in the Electrochemical power Sources

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Reticulated Vitreous Carbon (RVC_) is an open pore foam material composed solely of vitreous carbon i.e. glass-like carbon, but this material combines some properties of electron- conductive glass with some of those of normal industrial carbons. Over 200 papers have been published on different important electrochemical application of the RVC_. The use of the RVC_ electrodes modified with metals has benn proposed for the electrooxidation of impurities, optically transparent electrodes in thin layer constructions, removal and/or recovery of metal contaminations. This paper is a summary of recent literature on application of RVC_ in electrochemical cells including our latest work. The use of RVC_ in the construction of accumulators and batteries is discussed in detail showing the perspectives for wide application of this material in electrochemical power sources.
Rocznik
Strony
1357--1370
Opis fizyczny
Bibliogr. 41 poz., rys.
Twórcy
autor
  • Warsaw University, Department of Chemistry, Pasteura 1, 02-093 Warsaw, Poland
  • Industrial Chemistry Research Institute, Rydygiera 8, 01-793 Warsaw, Poland
  • Warsaw University, Department of Chemistry, Pasteura 1, 02-093 Warsaw, Poland
  • Industrial Chemistry Research Institute, Rydygiera 8, 01-793 Warsaw, Poland
autor
  • Warsaw University, Department of Chemistry, Pasteura 1, 02-093 Warsaw, Poland
  • Industrial Chemistry Research Institute, Rydygiera 8, 01-793 Warsaw, Poland
  • Warsaw University, Department of Chemistry, Pasteura 1, 02-093 Warsaw, Poland
  • Industrial Chemistry Research Institute, Rydygiera 8, 01-793 Warsaw, Poland
Bibliografia
  • 1. Reticulated Vitreous Carbon (An Exciting New Material), Bulletin, Chemometric International, Ann Arbor, Mitch., 176(1976).
  • 2. http://www.ergaerospace.com/literature/erg_tvc.pdf
  • 3. Wang J., Electrochim. Acta, 26, 1721 (1981) and references there.
  • 4. Friedrich J.M., Ponce-de-Leon C., Reade G.W. and Walsh F.C., J. Electroanal. Chem. ,561,203 (2004) and references there.
  • 5. Frydrychewicz A., Czerwiński A. and Jackowska K., Synth. Met., 121,1401 (2001).
  • 6. Norvell V.E. and Maraantov G., Anal. Chem., 49, 1470 (1977).
  • 7. Rogulski Z. and Czerwiński A., J. Power Sources, 114, 176 (2003).
  • 8. Rogulski Z. and Czerwiński A., J. Solid State Electrochem., 7,118 (2003).
  • 9. Rogulski Z. and Czerwiński A., Patent pending, P- 337251 (1999).
  • 10. Rogulski Z. and Czerwiński A., Patent pending, P- 350060 (2001).
  • 11. Rogulski Z. and Czerwiński A., Patent pending, P- 357757 (2002).
  • 12. Czerwiński A., Patet RP No 167796 (1995).
  • 13. Czerwiński A. and Żelazowska M., J. Electroanal. Chem., 410, 55 (1996).
  • 14. Czerwiński A. and Żelazowska M., J. Power Sources, 64, 29 (1997).
  • 15. Czerwiński A. and Żelazowska M., Polish Patent No 178258 (2000).
  • 16. Czerwiński A. and Żelazowska M., Polish Patent No 180939 (2001).
  • 17. Czerwiński A., Dmochowska M., Grdeń M., Kopczyk M., Wójcik G., Młynarek G., Kołata J. and Skowroński J.M., J. Power Sources, 77, 28 (1999).
  • 18. Wójcik G., Młynarek G., Kołata J., Kopczyk M., Dmochowska M., Grdeń M., Żelazowska-Zakrent M., Czerwiński A. and Skowroński J.M., Polish J. Appl. Chem., 44 (1), 7 (2000).
  • 19. Czerwiński A., Dmochowska M., Grdeń M., Wójcik G., Młynarek G., Kopczyk M. and Skowroński J.M., Polish Patent No 185542 (2003).
  • 20. Bennetto H.P., Stirling J.L., Tanaka K. and Vega C.A., Biotechnol. Bioeng., 25, 559 (1983).
  • 21. Akiba T., Bennetto H.P., Stirling J.L. and Tanaka K., Biotechnol. Lett., 9, 611 (1987).
  • 22. Alien R.M. and Bennetto H.P., Appl. Biochem. Biotechnol., 39/40,27 (1993).
  • 23. Roller S.D., Bennetto H.P., Delaney G.M., Mason J.R., Stirling J.L. and Thurston C.F., J. Chem. Technol. Biotechnol., 34B, 3 (1984).
  • 24. Delaney G.M., Bennetto H.P., Mason J.R., Roller S.D., Stirling J.L. and Thurston C.F,,J. Chem. Technol. Biotechnol., 34B, 13 (1984).
  • 25. Thurston C.F., Bennetto H.P., Delaney G.M., Mason J.R., Roller S.D. and Stirling J.L., J. Gen. Microbiol, 131, 1393 (1985).
  • 26. Kim N., Choi Y., Jung S. and Kim S., Bull. Korean Chem. Soc., 21,44 (2000).
  • 27. Choi Y., Kim N., Kim S. and Jung S., Bull. Korean Chem. Soc., 24,437 (2003).
  • 28. Wilkinson S., Proceedings of the IASTED International Conference Robotics and Applications 2000, August 14-16,2000 - Honolulu, Hawaii, USA. Available online.
  • 29. Wilkinson S., Autom. Robots, 9, 99 (2000).
  • 30. Mastragostino M. and Valcher S., Electrochim. Acta, 28, 501 (1983).
  • 31.Iacovangelo C.D. and Will F.G., J. Electrochem. Soc., 132, 851 (1985).
  • 32. Novak P., Muler K„ Santhanan K.S.V. and Hass 0., Chem. Rev., 97, 207 (1997).
  • 33. Tsutsumi H., Yamashita S. and Oishi T„ Synth. Metals, 85, 1361 (1997).
  • 34. Tsutsumi H., Yamashita S. and Oishi T., J. Appl. Electrochem.. 27, 477 (1997).
  • 35. Mirmohseni A. and Solhjo R., Europ. Polym. J., 39, 219 (2003).
  • 36. Das K. and Mondal A., J. Power Sources, 55, 251 (1995).
  • 37. Pavlov D., J. Power Sources, 53, 9 (1995).
  • 38. Das K. and Mondal A., J. Power Sources, 89, 112 (2000).
  • 39. Gyenge E., Jung J. and Mahato B., J. Power Sources, 113, 388 (2003).
  • 40. Gyenge E., Jung J., Splinter S. and Snaper A., J. Appl. Electrochem., 32, 287 (2002).
  • 41. Gyenge E. and Jung J., Patent No W003028130.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ1-0024-0079
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