Lee Sin-doo | School Of Electric Engineering #32 Seoul National University
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概要
関連著者
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Lee Sin-doo
School Of Electric Engineering #32 Seoul National University
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Yu Chang-jae
School Of Electric Engineering #32 Seoul National University
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Lee Sin-Doo
School of Electrical Engineering #032, Seoul National University
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Lee S‐d
Seoul National Univ. Seoul Kor
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Lee Ju-Hyun
School of Electrical Engineering #032, Seoul National University
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Lee Ju-hyun
School Of Electrical Engineering #032 Seoul National University
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Lee S‐d
Dongguk Univ. Seoul Kor
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Lee J‐h
School Of Electrical Engineering #032 Seoul National University
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Yu Chang-Jae
School of Electrical Engineering, Seoul National University
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KIM Jae-Hoon
Department of Electronics and Computer Engineering, Hanyang University
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Lee Jin-ho
Microwave Devices Team Etri
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Kim Jinyool
School Of Electrical Engineering #32 Seoul National University
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Na Jun-Hee
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Kim Hak-rin
School Of Electrical Engineering #032 Seoul National University
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Kim Dong-woo
School Of Electrical Engineering #32 Seoul National University
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Park Jae-hong
School Of Electrical Engineering #032 Seoul National University
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Yu Chang-Jae
Department of Electronic Engineering, Hanyang University, Seoul 133-791, Korea
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Chung Doo-han
Department Of Organic And Polymeric Materials Tokyo Institute Of Technology
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Park J‐h
Seoul National Univ. Seoul Kor
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Yu C‐j
Seoul National Univ. Seoul Kor
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Yoon Tae-young
School Of Electrical Engineering Seoul National University
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Jang Eunje
School Of Electrical Engineering Seoul National University
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Kim Won-ho
School Of Electrical Engineering #32 Seoul National University
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You Doo-Hwan
School of Electrical Engineering, Seoul National University
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Bae Jin-hyuk
School Of Electrical Engineering #32 Seoul National University
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You Doo-hwan
School Of Electrical Engineering Seoul National University
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Hong Jong-Ho
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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ISHIKAWA Ken
Department of Organic and Polymeric Materials, Tokyo Institute of Technology
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TAKANISHI Yoichi
Department of Organic and Polymeric Materials, Tokyo Institute of Technology
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Takanishi Yoichi
Department Of Organic And Polymeric Materials Tokyo Institute Of Technology
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Kim J‐h
Electronics And Telecommunications Res. Inst. Daejeon Kor
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Kim J‐h
Hallym Univ. Kangwon‐do Kor
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Lee J‐h
Seoul National Univ. Seoul Kor
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Takezoe Hideo
Department Of Organic And Polymeric Materials Tokyo Institute Of Technology
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Park Jae-Hong
School of Electrical Engineering #032, Seoul National University
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Park Jae-Hons
School of Electrical Engineering #032, Seoul National University
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Lee Shin-Doo
School of Electrical Engineering, Seoul National University
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Nguyen H.T.
Centre de Recherche Paul Pascal
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Yu Chang-jae
School Of Electrical Engineering #32 Seoul National University
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TAKAZOE Hideo
Department of Organic and Polymeric Materials, Tokyo Institute of Technology
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JANG Eunje
School of Electrical Engineering, Seoul National University
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Ishikawa Ken
Department Of Organic And Polymeric Materials Tokyo Institute Of Technology
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Park Jae-hons
School Of Electrical Engineering #032 Seoul National University
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Lee Ju-hyun
School Of Electrical Engineering Seoul National University
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Lee Ju-hyun
Department Of Veterinary Physiology College Of Veterinary Medicine And Bk21 Program For Veterinary S
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Yu Chang-jae
Department Of Information Display Engineering Hanyang University
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Yu Chang-jae
School Of Electrical Engineering Seoul National University:(present Office)samsung Sdi Co. Ltd.
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Suh Min
Corporate R&d Center Samsung Sdi Co. Ltd.
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Lee Sin-doo
School Of Electrical Engineering Seoul National University
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Lee Sin-doo
School Of Electrical Engineering #32 Seoul National University
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Im Jaehyun
School Of Electrical Engineering Seoul National University
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Jin Jung-il
Department Of Chemistry Advanced Materials Chemistry Research Center Korea University
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Lee Sin-doo
School Of Electrical Engineering #032 Seoul National University
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Kim Sung-jin
School Of Electrical Engineering #32 Seoul National University
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Lee Shin-doo
School Of Electrical Engineering Seoul National University
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Lee Byoungho
School Of Electrical Engineering Seoul National University
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Jung Jong-wook
Department Of Electronics And Computer Engineering Hanyang University
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Jeon Young
Department Of Biological Sciences Korea Advanced Institute Of Science And Technology
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Kim J‐h
Communications Satellite Development Group Etri
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SONG Hyungjun
School of Electrical Engineering, Seoul National University
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YU Mi
School of Electrical Engineering, Seoul National University
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Yu Mi
School Of Electrical Engineering Seoul National University
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Song Hyungjun
School Of Electrical Engineering Seoul National University
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Kim Jae-hoon
Department Of Physics Hallym University
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Lee Sin-doo
School Of Electrical Engineering #32 Seoal National Universit
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Yu Chang-jae
School Of Electrical Engineering #32 Seoal National University
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Lee Won-je
School Of Electrical Engineering #032 Seoul National University
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Kim Dong-Woo
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Kim Dong-Woo
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-742, Korea
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Ahn Taek
Corporate R&D Center, Samsung SDI Co., Ltd., 428-5, Gongse-Ri, Kiheung-Eup, Yongin-City, Gyeonggi-Do, 449-902, Korea
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Lee Sin-Doo
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Chung Doo-Han
Department of Organic and Polymeric Materials, Tokyo Institute of Technology, O-okayama, Meguro-ku, Tokyo 152-8552, Japan
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Lee Sin-Doo
School of Electrical Engineering #32, Seoul National University, Seoul 151-600, Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, Kwanak P. O. Box 34, Seoul 151-600, Korea
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Lee Sin-Doo
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-742, Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Republic of Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, P. O. Box 34, Kwanak, Seoul 151-742, Korea
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Lim Yong-Woon
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-742, Korea
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Pae Hyung
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, Kwanak, P.O. Box 34, Seoul 151-600, Korea
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Lee Sin-Doo
School of Electrical Engineering, Seoul National University, Kwanak-Gu Shinlim-Dong, 151-744 Seoul, Korea
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Lee Sin-Doo
School of Electrical Engineering #32, Seoul National University, Kwanak PO Box 34, Seoul 151-742, Korea
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Lee Sang-Wook
School of Electrical Engineering, Seoul National University, Kwanak, P.O. Box 34, Seoul 151-600, Korea
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Na Yu-Jin
School of Electrical Engineering, Seoul National University, Kwanak, P.O. Box 34, Seoul 151-600, Korea
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Choi Yoonseuk
School of Electrical Engineering, Seoul National University, Kwanak, P.O. Box 34, Seoul 151-600, Korea
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Baek Seungin
School of Electrical Engineering, Seoul National University, Kwanak-Gu Shinlim-Dong, 151-744 Seoul, Korea
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Roh Sookyoung
School of Electrical Engineering, Seoul National University, Kwanak-Gu Shinlim-Dong, 151-744 Seoul, Korea
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Jeong Yoonchan
Optoelectronics Research Centre, University of Southampton, Southampton SO7 1BJ, United Kingdom
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Jeong Cherlhyun
School of Electrical Engineering, Seoul National University, Kwanak-Gu Shinlim-Dong, 151-744 Seoul, Korea
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Kim Won-Ho
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Ahn Taek
Corporate R&D Center, Samsung SDI Co., Ltd., 428-5, Gongse-Ri, Kiheung-Eup, Yongin-City, Gyeonggi-Do, 449-902, Korea
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Yu Chang-Jae
Department of Electronics and Computer Engineering, Hanyang University, Seoul 133-791, Korea
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Yu Chang-Jae
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-742, Korea
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Yu Chang-Jae
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Pae Hyungwu
School of Electrical Engineering, Seoul National University, Kwanak P. O. Box 34, Seoul 151-600, Korea
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Cho Seong-Min
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Kim Yeun-Tae
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Lee Byoungho
School of Electrical Engineering, Seoul National University, Kwanak-Gu Shinlim-Dong, 151-744 Seoul, Korea
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Kim Jae-Hoon
Department of Physics, Hallym University, Chunchon, Kangwon-Do 200-702, Korea
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Im Jaehyun
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Republic of Korea
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Jang Eunje
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Republic of Korea
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Kim Jinyool
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Korea
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Kim Jinyool
School of Electrical Engineering, Seoul National University, Kwanak P. O. Box 34, Seoul 151-600, Korea
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Kim Jinyool
School of Electrical Engineering #32, Seoul National University, Kwanak P.O. Box 34, Seoul 151-742, Korea
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Suh Min
Corporate R&D Center, Samsung SDI Co., Ltd., 428-5, Gongse-Ri, Kiheung-Eup, Yongin-City, Gyeonggi-Do, 449-902, Korea
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Jin Jung-Il
Department of Chemistry, Korea University, Seoul 136-701, Korea
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Kim Min-Hoi
School of Electrical Engineering #32, Seoul National University, Seoul 151-600, Korea
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Choi Wonsuk
School of Electrical Engineering #32, Seoul National University, Seoul 151-600, Korea
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Jung Jong-Wook
Department of Physics, Hallym University, Chunchon, Kangwon-Do 200-702, Korea
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Kim Hak-Rin
School of Electrical Engineering, Seoul National University, Kwanak P.O. Box 34, Seoul 151-600, Republic of Korea
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ISHIKAWA Ken
Department of Applied Physics, University of Tokyo
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Yu Chang-Jae
School of Electrical Engineering #32, Seoul National University, Kwanak PO Box 34, Seoul 151-742, Korea
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Yu Chang-Jae
Department of Electronics and Computer Engineering, Hanyang University, 17 Haengdang-dong, Seoungdong-gu, Seoul 133-791, Korea
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Hong Sunkwang
AMLCD Division, Samsung Electronics Co., Ltd., Yongin-city, Kyeonggi-do 449-711, Korea
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Na Jun-Hee
School of Electrical Engineering, Seoul National University, Kwanak P. O. Box 34, Seoul 151-600, Korea
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Kim Jiyoon
School of Electrical Engineering, Seoul National University, Kwanak P. O. Box 34, Seoul 151-600, Korea
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Choi Yoonseuk
Department of Electronic Engineering, Hanbat National University, Daejeon 305-719, Korea
著作論文
- An Axially Symmetric Liquid Crystal Display Using a Grating Surface of UV Curable Polymer (情報ディスプレイ--The 6th Asian Symposium on Information Display & Exhibition)
- AN AXIALLY SYMMETRIC LIQUID CRYSTAL DISPLAY USING A GRATING SURFACE OF UV CURABLE POLYMER
- Dielectric Study on Ferri-like Ordering in Antiferroelectric Liquid Crystals during the Field-Induced Phase Transition
- Alignment Control of a Nematic Liquid Crystal on a Doubly Treated Substrate
- The Vertical Configuration of Antiferroelectric Liquid Crystal Display Mode (情報ディスプレイ--The 6th Asian Symposium on Information Display & Exhibition)
- The Vertical Configuration of Antiferroelectric Liquid Crystal Display Mode
- Pretilt Control of a Nematic Liquid Crystal on Polymer Layers by Atmospheric Plasma Irradiation
- New Configuration of a Transflective Liquid Crystal Display Having a Single Cell Gap and a Single Liquid Crystal Mode
- Control of the Anisotropic Phase Separation and the Electro-Optical Stability of Ferroelectric Liquid Crystal-Photopolymer Composites
- Quasi-Achromatic and Wide Viewing Properties of a Reflective Liquid Crystal Display in In-Plane Optical Geometry
- Phase Diagram for Ferroelectric Nematic Ordering of Hard Spherocylinders with Longitudinal Dipoles
- A Mean-Field Photoreaction Model for the Pretilt Generation of a Liquid Crystal on Photopolymer Layers upon Ultraviolet Exposure
- Electro-Optical Bistability Associated With Stripe Formation in Highly Twisted Nematic Liquid Crystals
- Chemically Compatible Sacrificial Layer-Assisted Lift-Off Patterning Method for Fabrication of Organic Light-Emitting Displays
- Low-Leakage Polymeric Thin-Film Transistors Fabricated by Laser Assisted Lift-Off Technique
- Liquid-Crystal-Cladding Fiber Bragg Gratings with Electrically Controllable Polarization-Dependent Characteristics
- Alignment Control of a Nematic Liquid Crystal on a Doubly Treated Substrate
- A Fast Transflective Ferroelectric Liquid Crystal Display with Gray Scales in a Single Gap Geometry with Dual Transverse Electric Fields
- Viewing Angle Switchable Liquid Crystal Display with Double Layers Separated by an Interlayer Support
- Physical Mechanism for Bistable Polar Switching of a Nematic Liquid Crystal in a Boundary Layer Configuration
- Brightness-Enhanced Transflective Liquid Crystal Display Having Single-Cell Gap in Vertically Aligned Configuration
- Dielectric Anomaly in Ferroelectric Liquid Crystals with Polarization Inversion
- Site-Selective Assembly and Fixation of Colloidal Particles into Two-Dimensional Array on Wettability-Patterned Surface
- Precise Determination of Thermal Effect on the Optical Properties of Liquid Crystal Devices Using the Fabry–Perot Interferometry
- Importance of the Functional Group Density of a Polymeric Gate Insulator for Organic Thin-Film-Transistors
- Topographic Confinement of a Ferroelectric Liquid Crystal for Highly Efficient Tunable Electrooptic Effect with Reduced Threshold
- Determination of Mean-Field Coefficients of Ferroelectric Liquid Crystals
- Reduction in Contact Resistance of Pentacene Thin-Film Transistors by Formation of an Organo-Metal Hybrid Interlayer