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Dielectric and electro-optical studies of a nickel-ferrite-nanoparticle- doped ferroelectric liquid crystal mixture
Authors:Khushboo  Puneet Sharma  Praveen Malik  KK Raina
Institution:1. Material Research Laboratory, School of Physics and Material Science, Thapar University Patiala, Patiala, Indiakhushurpuk@gmail.com;3. Material Research Laboratory, School of Physics and Material Science, Thapar University Patiala, Patiala, India;4. Liquid Crystal Research Laboratory, Department of Physics, Dr B R Ambedkar National Institute of Technology, Jalandhar, India
Abstract:Effect of magnetic nanoparticles (nickel ferrite) doping on the dielectric and electro-optical properties of a ferroelectric liquid crystal mixture has been studied. In a doped ferroelectric liquid crystal mixture, dispersion of a small amount (0.25 wt.%) of nickel ferrite nanoparticles decreases the polarization and improves the response time compared to an undoped mixture. The significant changes in the polarization and response time are explained on the basis of dipole–dipole interaction and anchoring phenomena. Dielectric permittivity also increases with increasing the temperature of the SmC* phase and shows a reduction in dielectric loss in a doped sample. A Goldstone mode is clearly observed at ~200 and ~500 Hz in an undoped and a doped sample, respectively.
Keywords:ferroelectric liquid crystal  nickel ferrite nanoparticles  permittivity  polarization  response time
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