Title of article :
Thermal and electro‑optic properties of graphene oxide‑doped hexylcyanobiphenyl liquid crystal
Author/Authors :
Özgan, Şükrü Department of Physics - Kahramanmaraş Sütçü İmam University - 46100 Kahramanmaraş, Turkey , Eskalen, Hasan Materials Science and Engineering Program - Institute of Science and Technology - Kahramanmaraş Sütçü İmam University - 46100 Kahramanmaraş, Turkey , Tapkıranlı, Yusuf Department of Physics - Kahramanmaraş Sütçü İmam University - 46100 Kahramanmaraş, Turkey
Abstract :
Hexylcyanobiphenyl liquid crystal was doped with graphene oxide at ratios %0.25GO, %0.5GO, %1GO and %2GO, and
the change in physical properties of pristine and the doped liquid crystals has been investigated. The phase transitions of
prepared samples were studied by differential scanning calorimeter and polarized optical microscopy. The differential scanning
calorimeter and polarized optical microscopy results are in good agreement when examining the nematic–isotropic
liquid phase transition temperatures of the hexylcyanobiphenyl. The liquid crystal texture images obtained with polarized
optical microscopy reveals that thermal stability of sample changed with graphene oxide concentration, i.e., increased with
graphene oxide concentration. Impedance, capacitance, conductivity and real and imaginary dielectric constants of the pure
and doped liquid crystals were obtained depending on frequency and voltage at the room temperature by using impedance
analyzer. These electrical properties of the pure and the graphene oxide-doped samples showed an increase with increasing
the graphene oxide ratio. The voltage-dependent light transmittance experiment revealed that threshold voltage of LC cells
decreased for %0.25GO- and % 1GO-dispersed samples, but it was increased at %0.5GO- and %2GO-dispersed samples.
Keywords :
Liquid crystal , Graphene oxide , Thermal and electro-optic properties , DSC , POM , Dielectric
Journal title :
Journal of Theoretical and Applied Physics