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  • Carbon nanostructures were directly deposited on a working electrode of a thick film sensor used for heavy metal detection. The sensor structure (Figure 1.) was fabricated by screen-printing techniques on Al2O3 ceramic substrate. The electrodes and conductive layer material was ESL 9912-D paste and for dielectric layer ESL 4913-G paste (both ESL ElectroScience, UK). The base of working electrode is formed from Ag, Au, or Pt to prevent inter-metallic reaction with catalyst during deposition process. Demand for the electrical conductivity of the working electrode was a limiting factor for the choice of the barrier material and a metal-metal interaction during the carbon nanotubes (CNTs) deposition in high temperature (600-700 C) required an optimization of the whole electrode system. The barrier layers were prepared by the screen printing or electroplating and possibly heated up to 500 or 850 C. The catalyst was vacuum evaporated 5-20 nm thick layer of Ni on top of the working electrode surface.
  • Carbon nanostructures were directly deposited on a working electrode of a thick film sensor used for heavy metal detection. The sensor structure (Figure 1.) was fabricated by screen-printing techniques on Al2O3 ceramic substrate. The electrodes and conductive layer material was ESL 9912-D paste and for dielectric layer ESL 4913-G paste (both ESL ElectroScience, UK). The base of working electrode is formed from Ag, Au, or Pt to prevent inter-metallic reaction with catalyst during deposition process. Demand for the electrical conductivity of the working electrode was a limiting factor for the choice of the barrier material and a metal-metal interaction during the carbon nanotubes (CNTs) deposition in high temperature (600-700 C) required an optimization of the whole electrode system. The barrier layers were prepared by the screen printing or electroplating and possibly heated up to 500 or 850 C. The catalyst was vacuum evaporated 5-20 nm thick layer of Ni on top of the working electrode surface. (en)
Title
  • Carbon nanostructures deposition in microwave plasma torch at atmospheric pressure on sensors for heavy metal detection
  • Carbon nanostructures deposition in microwave plasma torch at atmospheric pressure on sensors for heavy metal detection (en)
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  • Carbon nanostructures deposition in microwave plasma torch at atmospheric pressure on sensors for heavy metal detection
  • Carbon nanostructures deposition in microwave plasma torch at atmospheric pressure on sensors for heavy metal detection (en)
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  • RIV/00216224:14310/07:00019519!RIV10-MSM-14310___
http://linked.open...avai/riv/aktivita
http://linked.open...avai/riv/aktivity
  • P(1QS201710508), P(GA202/05/0607), Z(AV0Z20410507), Z(AV0Z20650511), Z(MSM0021622411)
http://linked.open...vai/riv/dodaniDat
http://linked.open...aciTvurceVysledku
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  • 412628
http://linked.open...ai/riv/idVysledku
  • RIV/00216224:14310/07:00019519
http://linked.open...riv/jazykVysledku
http://linked.open.../riv/klicovaSlova
  • carbon nanotubes; heavy metals; sensor (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...ontrolniKodProRIV
  • [4BF878004201]
http://linked.open...v/mistoKonaniAkce
  • Bratislava
http://linked.open...i/riv/mistoVydani
  • Bratislava
http://linked.open...i/riv/nazevZdroje
  • Book of Contributed Papers of The 3rd Seminar on New Trends on Plasma Physics and Solid State Physics
http://linked.open...in/vavai/riv/obor
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http://linked.open...cetTvurcuVysledku
http://linked.open...vavai/riv/projekt
http://linked.open...UplatneniVysledku
http://linked.open...iv/tvurceVysledku
  • Buršík, Jiří
  • Hubálek, Jaromír
  • Jašek, Ondřej
  • Prášek, Jan
  • Dostál, Vladimír
  • Matějková, Jiřina
  • Rek, Antonín
http://linked.open...vavai/riv/typAkce
http://linked.open.../riv/zahajeniAkce
http://linked.open...n/vavai/riv/zamer
number of pages
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  • Univerzita Komenského v Bratislave. Knižničné a edičné centrum
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  • 978-80-89186-24-2
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  • 14310
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