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Dynamic operation of liquid crystal cell with inherently nanogroove-featured aligned carbon nanotube sheets
Authors:Thuy-Kieu Truong  Ji Hyun Park  MD Asiqur Rahman  Martin Urbanski  Eun Sung Kim  Giusy Scalia  Dongseok Suh
Institution:1. Department of Energy Science, Sungkyunkwan University, Suwon 16419, Republic of Korea;2. Physics and Material Science Unit, University of Luxembourg, Luxembourg;3. R&D Center, A-Tech System Ltd., 18 Annam-ro 369 Beon-gil, Bupyeong-gu, Incheon 21312, Republic of Korea
Abstract:The use of a highly aligned carbon nanotube (CNT) sheet as a multifunctional constituent for liquid crystal (LC) displays and electro-optic LC applications is assessed. The CNT sheet can perform a dual function: one is an alignment layer for LCs, replacing the commonly used rubbed polyimide film, and the other is a transparent conductive layer, taking the place of indium tin oxide. The hydrophobic treatment improved the adhesion quality between aligned CNT bundles and the glass substrate, which helps to preserve the inherently aligned nanogroove morphology of transparent CNT sheets. The test LC display cells, comprising 4-cyano-4′-pentylbiphenyl molecules sandwiched between CNT-sheet-on-glass substrates, demonstrate the operation characteristics comparable to that of the conventional cell under temperature variation and ac electric field of 1?kHz. The results offer a possibility of deploying multifunctional CNT-sheet alignment layers in LC-based devices, especially in the future flexible display applications.
Keywords:Liquid crystal cells  Aligned carbon nanotube sheets  Polyimide alignment layer for liquid crystal display  Indium-tin oxide transparent conductor
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