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Description
  • Uhlíkové nanotrubičky (CNTs – long tubular carbon nanostructures) patří k nejlepším materiálům emitujícím elektronové pole. Na základě experimentálně určené elkektronové hustoty v duálním depozičním systému žhavené vlákno/stejnosměrná plazma bylo vypočtzno elektrické pole u substrátu a iontový elektrický tok. Byla numericky vyšetřována závislost elektrických charakteristik a plazmových parametrů u vrcholků nanotrubiček. (cs)
  • Carbon nanotubes (CNTs – long tubular carbon nanostructures) belong to the best electron field emitting materials. Based on the experimentally determined electron density in the dual hot filament/DC plasma deposition system the electric field close to thsubstrate and ion energy flux were calculated. The dependences of electric characteristics close to the nanotube tips on various geometric and plasma parameters were numerically investigated.
  • Carbon nanotubes (CNTs – long tubular carbon nanostructures) belong to the best electron field emitting materials. Based on the experimentally determined electron density in the dual hot filament/DC plasma deposition system the electric field close to thsubstrate and ion energy flux were calculated. The dependences of electric characteristics close to the nanotube tips on various geometric and plasma parameters were numerically investigated. (en)
Title
  • Zkoumání elektrických podmínek v soudsedství uhlíkových nanotrubiček tvořených v stejnosměrné plazmě. (cs)
  • Investigation of electric conditions in the vicinity of carbon nanotubes grown in a DC plasma sheath.
  • Investigation of electric conditions in the vicinity of carbon nanotubes grown in a DC plasma sheath. (en)
skos:prefLabel
  • Zkoumání elektrických podmínek v soudsedství uhlíkových nanotrubiček tvořených v stejnosměrné plazmě. (cs)
  • Investigation of electric conditions in the vicinity of carbon nanotubes grown in a DC plasma sheath.
  • Investigation of electric conditions in the vicinity of carbon nanotubes grown in a DC plasma sheath. (en)
skos:notation
  • RIV/46747885:24210/04:24210163!RIV/2005/MSM/242105/N
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  • 568895
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  • RIV/46747885:24210/04:24210163
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  • carbon nanotubes, field enhancement factor, collisional plasma sheath, field electron (en)
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  • Blažek, Josef
  • Špatenka, Petr
  • Taeschner, Christine
  • Leonhardt, A.
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  • 24210
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