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  • Introduction The solid electrodes in general, and the carbon materials (powder, fiber or glassy carbon) in particular, have been used widely in electroanalytical research and technological applications (functional or structural fuel cell components). Carbon materials have played an important role in solid electrode development for the following reasons. First, various forms are available at reasonable price. Second, the slow kinetics of carbon oxidation leads to a wide useful potential range. The carbon electrode can be modified by applying a thin metallic or polymer layer, or in case of the paste electrode by some additives or powders (graphite composite electrode) that increase the selectivity [1]. This contribution describes the voltammetric results of some depolarizers on a paraffin impregnated graphite electrode (PIGE). The graphite rod of spectral purity is a porous material and, therefore, must be impregnated with paraffin to fill the pores and decrease the background current [2].
  • Introduction The solid electrodes in general, and the carbon materials (powder, fiber or glassy carbon) in particular, have been used widely in electroanalytical research and technological applications (functional or structural fuel cell components). Carbon materials have played an important role in solid electrode development for the following reasons. First, various forms are available at reasonable price. Second, the slow kinetics of carbon oxidation leads to a wide useful potential range. The carbon electrode can be modified by applying a thin metallic or polymer layer, or in case of the paste electrode by some additives or powders (graphite composite electrode) that increase the selectivity [1]. This contribution describes the voltammetric results of some depolarizers on a paraffin impregnated graphite electrode (PIGE). The graphite rod of spectral purity is a porous material and, therefore, must be impregnated with paraffin to fill the pores and decrease the background current [2]. (en)
Title
  • Application of elimination voltammetry with linear scan to the study of electrode processes on a graphite electrode
  • Application of elimination voltammetry with linear scan to the study of electrode processes on a graphite electrode (en)
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  • Application of elimination voltammetry with linear scan to the study of electrode processes on a graphite electrode
  • Application of elimination voltammetry with linear scan to the study of electrode processes on a graphite electrode (en)
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  • RIV/00216224:14310/06:00016638!RIV10-MSM-14310___
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  • RIV/00216224:14310/06:00016638
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  • elimination voltammetry with linear scan; electrode processes; graphite electrode (en)
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  • [5ADD9D065446]
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  • Brno
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  • Sborník příspěvků VI. Pracovního setkání fyzikálních chemiků a elektrochemiků
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  • Trnková, Libuše
  • Zerzánková, Lenka
  • Oriňáková, Renáta
  • Rozik, Roland
  • Gálová, Miriam
  • Strečková, Magdaléna
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  • Masarykova univerzita
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  • 80-210-3943-4
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  • 14310
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