Highly enhanced voltage holding property for low-frequency-driven fringe-field switching liquid crystal mode by charge-trapping effect of carbon-nanotube-doped surface
Author:
Funder
LG Display
National Research Foundation of Korea
Ministry of Education
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference38 articles.
1. Electro-optic characteristics and switching principle of a nematic liquid crystal cell controlled by fringe-field switching
2. Past, present, and future of fringe-field switching-liquid crystal display
3. Fast falling time of fringe-field-switching negative dielectric anisotropy liquid crystal achieved by inserting vertical walls
4. Liquid Crystals for Superior Electro-Optic Performance Display Device with Power-Saving Mode
5. Image flickering-free polymer stabilized fringe field switching liquid crystal display
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1. Spontaneously homogeneous alignment of liquid crystals on self-assembly organic rubrene;Journal of Molecular Liquids;2024-02
2. The Effect of Chemically Modified Multi-Walled Carbon Nanotubes on the Electro-Optical Properties of a Twisted Nematic Liquid Crystal Display Mode;Crystals;2022-10-19
3. Physical Properties of Thermally Crosslinked Fluorinated Polyimide and Its Application to a Liquid Crystal Alignment Layer;Polymers;2021-11-11
4. Flicker‐Free Fringe‐Field Switching Liquid Crystal Display Operable at Extremely Low Frequencies for Power Saving;Advanced Engineering Materials;2021-06-23
5. Photocontrollable Resistivity Change in Nanoparticle-Doped Liquid Crystal Alignment Layer: Voltage Holding and Discharging Properties of Fringe-Field Switching Liquid Crystal Modes;Crystals;2021-03-09
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