Publication | Closed Access
Superior electro-optic properties of liquid crystal system using cobalt oxide nanoparticle dispersion
37
Citations
29
References
2013
Year
Materials ScienceEngineeringNematic Liquid CrystalElectrode-electrolyte InterfaceNanomaterialsOptical PropertiesNanotechnologyPure Liquid CrystalApplied PhysicsAdvanced Electrode MaterialSuperior Electro-optic PropertiesChemistryLiquid Crystal SystemElectrochemical ProcessNanocrystalline MaterialElectrochemistryElectro-optics DeviceCobalt Oxide
In this article, we study the electro-optical (EO) properties of the homogeneous aligned nematic liquid crystal (N-LC) doped with cobalt oxide (Co3O4) nanoparticles (NPs). The EO characteristics of Co3O4 doped N-LC are higher performance, indicating lower threshold voltage (1.33 V), faster rising time (1.479 ms), and faster falling time (9.343 ms) than pure liquid crystal (LC) cells. We have demonstrated these results by investigating the relationship between dielectric constants and LC device properties. Furthermore, we proved NPs doped N-LC cells drive low power operation without capacitance hysteresis. Our experimental results were verified by software simulation based on general physical properties.
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