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  • The effects of ionic surfactants on the separation and distribution of multi-wall carbon nanotubes (MWCNTs) in silicone matrix were investigated. The MWCNTs were dispersed in an aqueous suspension containing an anionic surfactant DBSA (dodecylbenzene sulfonic acid) with different technological methods. Homogeneity and morphology were analyzed by TEM and SEM microscopy. Electrical and thermal conductivity of silicone nanocomposites filled with unmodified MWCNT and modified MWCNT/DBSA were studied. On the basis of obtained results the electrical percolation threshold was determined for both nanocomposite systems. The lower electrical percolation thresholdwas observed for composite with unmodified filler (around 1 wt. %). The modification of MWCNT/DBSA increased c up to 3 wt.%. The observed enhancement of c can be explained by capsulation of each MWCNT by DBSA. The incorporation of unmodified MWCNT as well as modified MWCNT/DBSA to silicone increases the thermal conductivity of matrix by approximately 7
  • The effects of ionic surfactants on the separation and distribution of multi-wall carbon nanotubes (MWCNTs) in silicone matrix were investigated. The MWCNTs were dispersed in an aqueous suspension containing an anionic surfactant DBSA (dodecylbenzene sulfonic acid) with different technological methods. Homogeneity and morphology were analyzed by TEM and SEM microscopy. Electrical and thermal conductivity of silicone nanocomposites filled with unmodified MWCNT and modified MWCNT/DBSA were studied. On the basis of obtained results the electrical percolation threshold was determined for both nanocomposite systems. The lower electrical percolation thresholdwas observed for composite with unmodified filler (around 1 wt. %). The modification of MWCNT/DBSA increased c up to 3 wt.%. The observed enhancement of c can be explained by capsulation of each MWCNT by DBSA. The incorporation of unmodified MWCNT as well as modified MWCNT/DBSA to silicone increases the thermal conductivity of matrix by approximately 7 (en)
Title
  • Electrical and thermal conductivity of carbon nanotubes based silicone nanocomposites
  • Electrical and thermal conductivity of carbon nanotubes based silicone nanocomposites (en)
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  • Electrical and thermal conductivity of carbon nanotubes based silicone nanocomposites
  • Electrical and thermal conductivity of carbon nanotubes based silicone nanocomposites (en)
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  • RIV/70883521:28110/10:63509237!RIV11-MSM-28110___
http://linked.open...avai/riv/aktivita
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  • P(ME 883), Z(MSM7088352101)
http://linked.open...vai/riv/dodaniDat
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  • 256666
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  • RIV/70883521:28110/10:63509237
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  • Electrical and thermal conductivity; carbon nanotubes; silicone nanocomposites (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...ontrolniKodProRIV
  • [14C87A470C18]
http://linked.open...v/mistoKonaniAkce
  • Zlín
http://linked.open...i/riv/mistoVydani
  • Zlín
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  • Plastko 2010
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  • Ilčíková, Markéta
  • Svoboda, Petr
  • Sáha, Petr
  • Hřibová, Martina
  • Kazantseva, Natalia
  • Moučka, Robert
  • Vilčáková, Jarmila
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 Tomáše Bati ve Zlíně
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  • 978-80-7318-909-9
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  • 28110
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