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Catalytic Electrolysis-Free Copper Deposition Using Dispersions of Titanium Dioxide with Adsorbed Trespassing Metal Ions

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
It has been found that modification of TiO2 by impregnation with Pd2+, Cu2+, Fe2+, Fe3+ and Co2+ salts causes a significant rise of its catalytic activity in the reaction of metal copper deposition. Influence of nature of modifying cation, its concentration, counter-anion concentration and the effect of double modification by two different salts have also been investigated. Comparison of energetic characteristics of all intermediate compounds led us to a possible model of catalytic deposition of copper, explaining the increased catalytic activity of the modified examples.
Rocznik
Strony
117--123
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
autor
  • Chernivtsi National University, Kotsiubinsky St., 2, Chernivtsi, 58012, Ukraine, igorw@lenta.ru
Bibliografia
  • 1. Roldugin V.I., Usp. Khim., 69, 899 (2000) (in Russian).
  • 2. Sergeev G.B., Usp. Khim., 70, 915 (2001) (in Russian).
  • 3. Pomogailo A.D., Rozenberg A.S. and Uflyand I.E., Nano-particles of Metals in Polymers, Moscow, 2000 (in Russian).
  • 4. Buhtiyarov V.I. and Slin’ko M.G., Usp. Khim., 70, 167 (2001) (in Russian).
  • 5. Sviridov V.V., Silver-free Photography Materials, Leningrad, 1984 (in Russian).
  • 6. Vishenkov S. A., Chemical and Electrochemical Methods of Metal Covering Deposition, Moscow, 1975 (in Russian).
  • 7. Shalkauskas M.I. and Vashkyalis A.Yu. Chemical Metallization of Plastics, Leningrad, 1977 (in Russian).
  • 8. Mazurkevich Ya.S., Zozulya N.I., Rotaru V.K. and Yurov L.L., USSR Pat. 1688778; USSR Innov., 58 (1991) (in Russian).
  • 9. Mazurkevich Ya.S. and Kobasa1.1., Inorg. Mater., 33, 1403 (1997) (in Russian).
  • 10. Mazurkevich Ya.S., Zozulia N.I. and Kobasa I.N., Khim. iKhim. Tech., 41, 98 (1988) (in Russian).
  • 11. Gurevich V.Ya. and Pleskov Yu.V., Photoelectrochemistry of Semiconductors, Moscow, 1983 (in Russian).
  • 12. Pleskov Yu.V., Photoelectrochemical Transformation of Solar Energy, Moscow, 1990 (in Russian).
  • 13. Kulak A.I., Electrochemistry of Semiconducting Hetero-structures, Minsk, 1986 (in Russian).
  • 14. Henglein A., J. Phys. Chem., 97, 5457 (1993).
  • 15. Suhotin A.M., Electrochemical References, Leningrad, 1981 (in Russian).
  • 16. Energy Resources through Photochemistry and Catalysis. Ed. M. GrStzel., Acad. Press, NY, 1983.
  • 17. Streltsov E.A., Lazorenko-Manevich R.M., Pahomov V.P. and Kulak A.I., Elektrokhimya., 19, 365 (1983) (in Russian).
  • 18. Streltsov E.A., Lazorenko-Manevich R.M., Pahomov V.P. and Kulak A.I., Elektrokhimya, 19, 1148 (1983) (in Russian).
  • 19. Kobayashi K., Tanai U., Matsusima S. and Okada G., J. Phys. Chem., 100, 7106 (1996).
  • 20. Kolbasov G.Ya. and Gorodyskiy A.V., Process of Photo-stimulated Charge Transfer in Electrolyte- Semiconductor System, Kiev, 1993 (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ1-0023-0150
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