Dielectric properties of liquid crystals for display and sensor applications

Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal (LC) displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured in wide frequen...

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Published in:Journal of the Society for Information Display Vol. 23; no. 9; pp. 403 - 409
Main Authors: Belyaev, Victor V., Chausov, Denis N., Kurilov, Alexander D., Rybakov, Dmitriy O., Solomatin, Alexey S., Murauski, Anatoli A., Muravsky, Alexander A., Chigrinov, Vladimir G., Fan, Fan
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Language:English
Published: Campbell Blackwell Publishing Ltd 01-09-2015
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Abstract Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal (LC) displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured in wide frequency and temperature range including t < 0 °C as well as versus the angle θ between the directions of both magnetic and electric field in the measuring scheme. Some physical parameters of the nematic LC (NLC) dielectric relaxation have been determined. Effective values of the LC dielectric permittivity with different values of the LC pretilt angles in different parts of a complex LC cell have been simulated. Temperature dependence of nematic liquid crystal dielectric properties is investigated for wide temperature range liquid crystal displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured versus frequency and temperature. Some physical parameters of the nematic liquid crystal dielectric relaxation have been determined. Effective values of the liquid crystal dielectric permittivity with different values of the liquid crystal pretilt angles have been simulated.
AbstractList Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal (LC) displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured in wide frequency and temperature range including t<0°C as well as versus the angle [theta] between the directions of both magnetic and electric field in the measuring scheme. Some physical parameters of the nematic LC (NLC) dielectric relaxation have been determined. Effective values of the LC dielectric permittivity with different values of the LC pretilt angles in different parts of a complex LC cell have been simulated.
Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal (LC) displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured in wide frequency and temperature range including t < 0 °C as well as versus the angle θ between the directions of both magnetic and electric field in the measuring scheme. Some physical parameters of the nematic LC (NLC) dielectric relaxation have been determined. Effective values of the LC dielectric permittivity with different values of the LC pretilt angles in different parts of a complex LC cell have been simulated. Temperature dependence of nematic liquid crystal dielectric properties is investigated for wide temperature range liquid crystal displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured versus frequency and temperature. Some physical parameters of the nematic liquid crystal dielectric relaxation have been determined. Effective values of the liquid crystal dielectric permittivity with different values of the liquid crystal pretilt angles have been simulated.
Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal (LC) displays and capacitor temperature sensor. Both real and imaginary components of the dielectric constant have been measured in wide frequency and temperature range including t  < 0 °C as well as versus the angle θ between the directions of both magnetic and electric field in the measuring scheme. Some physical parameters of the nematic LC (NLC) dielectric relaxation have been determined. Effective values of the LC dielectric permittivity with different values of the LC pretilt angles in different parts of a complex LC cell have been simulated.
Author Murauski, Anatoli A.
Rybakov, Dmitriy O.
Fan, Fan
Belyaev, Victor V.
Solomatin, Alexey S.
Chigrinov, Vladimir G.
Chausov, Denis N.
Kurilov, Alexander D.
Muravsky, Alexander A.
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  givenname: Denis N.
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  givenname: Alexander D.
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  organization: Moscow Region State University, Russia
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  organization: Moscow Region State University, Russia
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  organization: Institute of Chemistry of New Materials NAS Belarus, Belarus
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  givenname: Vladimir G.
  surname: Chigrinov
  fullname: Chigrinov, Vladimir G.
  organization: Hong Kong University of Science and Technology, Hong Kong, Hong Kong
– sequence: 9
  givenname: Fan
  surname: Fan
  fullname: Fan, Fan
  organization: Hong Kong University of Science and Technology, Hong Kong, Hong Kong
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10.1364/AO.52.003012
10.1080/02678292.2012.714483
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Snippet Temperature dependence of dielectric properties of nematic liquid crystals are investigated for two types of devices: wide temperature range liquid crystal...
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SubjectTerms anisotropy
combined LC orientation
dielectric spectroscopy
liquid crystals
temperature sensor
Title Dielectric properties of liquid crystals for display and sensor applications
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