2006
DOI: 10.1063/1.2243549
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Response to “Comment on Electrical-field effect on carbon nanotubes in a twisted nematic liquid crystal cell [Appl. Phys. Lett. 87, 263110 (2005)]”

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Cited by 8 publications
(3 citation statements)
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“…Table 2 provides a short summary of the reported effects. As can be seen, both decrease [118,119,[121][122][123][124][125][126][127][143][144][145][146][147][148][149][150][151][152] and increase [105,120,[128][129][130][131][132][133][134][135][136][137][138][139][140][141][142][150][151][152][153] in the electrical conductivity of liquid crystals doped with carbon-based nanomaterials were reported.…”
Section: Carbon-based Nano-objects In Liquid Crystalsmentioning
confidence: 99%
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“…Table 2 provides a short summary of the reported effects. As can be seen, both decrease [118,119,[121][122][123][124][125][126][127][143][144][145][146][147][148][149][150][151][152] and increase [105,120,[128][129][130][131][132][133][134][135][136][137][138][139][140][141][142][150][151][152][153] in the electrical conductivity of liquid crystals doped with carbon-based nanomaterials were reported.…”
Section: Carbon-based Nano-objects In Liquid Crystalsmentioning
confidence: 99%
“…The electrical properties of liquid crystals doped with carbon nanotubes (CNT) were explored in numerous papers [105,116,. The majority of these manuscripts [105,116,117,[128][129][130][131][132][133][134][135][136][137][138][139][140][141][142] report the enhancement of the electrical conductivity  of liquid crystals doped with carbon nanotubes. The increase in  is associated with the percolation phenomenon and high intrinsic electrical conductivity of carbon nanotubes: a sharp transition from the ionic conductivity to the dominating charge hopping conductivity occurs at a certain concentration called the percolation concentration [105,116].…”
Section: Carbon-based Nano-objects In Liquid Crystalsmentioning
confidence: 99%
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