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Dive into the research topics where Vladimir Grigorievich Chigrinov is active.

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Featured researches published by Vladimir Grigorievich Chigrinov.


SID Symposium Digest of Technical Papers | 2001

45.3: Azo Dye Materials for the Alignment of Liquid Crystal

W.C. Yip; Elena Prudnikova; Vladimir M. Kozenkov; Vladimir Grigorievich Chigrinov; H. S. Kwok; Hidenari Akiyama; Masanobu Fukuda; Hirokazu Takada; Haruyoshi Takatsu

In this paper, the photo-induced alignment of liquid crystal on an azo dye film is discussed for the liquid crystal display (LCD) applications. This is a non-contact technique to align the liquid crystals so that the dust particles and static charges generated by the rubbing process can be eliminated. To prepare for the photo-alignment layer, the azo dye film is exposed to a linearly polarized or non-polarized light. As a result of the dipole absorption, the photo-induced molecular distribution is non-uniform and has an angular dependence. Consequently, since the dispersion forces between the dye and the liquid crystal molecules dominate, the induced orientation of the liquid crystal molecules is possible. The oblique incidence of the light exposure will also favour a non-zero pretilt angle. We find that the order parameter associated with the aligned liquid crystal medium is high, and very good contrast has been measured in the Twist Nematic (TN) LCD.


SID Symposium Digest of Technical Papers | 2006

27.1: Invited Paper: New Developments in Liquid Crystal Photo-Aligning by Azo-Dyes

Vladimir Grigorievich Chigrinov; H. S. Kwok; Hirokazu Takada; Haruyoshi Takatsu

Liquid crystal photo-alignment using azo-dyes is reviewed. This alignment method is very different from previously reported ones, such as photo-crosslinking, photo degradation and photoisomerization. It will be shown that this photo-aligning method can provide a controllable pretilt angle and strong anchoring energy of the liquid crystal cell, as well as high thermal and UV stability. The application of this method to the alignment and fabrication of various types of liquid crystal displays is also discussed.


Archive | 1992

Oriented photopolymers and process of preparing same

Vladimir Grigorievich Chigrinov; Vladimir Kozenkov; Nicolic Vasilievich Novoseletsky; Victor Yurievich Reshetnyak; Yuriy Reznikov; Martin Schadt; Klaus Schmitt


Archive | 2001

Method of manufacturing a photo-alignment layer

Vladimir Grigorievich Chigrinov; Masanobu Fukuda; Vladimir M. Kozenkov; H. S. Kwok; Elena Prudnikova; Hirokazu Takada; W.C. Yip


Archive | 2011

PERPENDICULAR ALIGNMENT LAYER COMPOSITION

Martin Schadt; Vladimir Grigorievich Chigrinov; Huaisin Kok; Nose Sayaka; Nagashima Yutaka; Nishiyama Isa; Takatsu Haruyoshi


Archive | 2012

OPTICAL ANISOTROPIC MATERIAL

Martin Schadt; Vladimir Grigorievich Chigrinov; Huaisin Kok; Nose Kiyoka; Nagashima Yutaka; Nishiyama Isa; Takatsu Haruyoshi


Archive | 2011

COMPOSITION FOR VERTICAL ORIENTATION LAYER

Martin Schadt; Vladimir Grigorievich Chigrinov; Huaisin Kok; Nose Sayaka; Nagashima Yutaka; Nishiyama Isa; Takatsu Haruyoshi


Archive | 2012

COMPOSITION FOR LIQUID CRYSTAL ALIGNMENT LAYER

Martin Schadt; Vladimir Grigorievich Chigrinov; Huaisin Kok; Nose Kiyoka; Nagashima Yutaka; Nishiyama Isa; Takatsu Haruyoshi


Archive | 2012

OPTICAL ANISOTROPIC BODY

Martin Schadt; Vladimir Grigorievich Chigrinov; Huaisin Kok; Nose Kiyoka; Nagashima Yutaka; Nishiyama Isa; Takatsu Haruyoshi


Archive | 2005

Composé azoïque, composition pour un film d'alignement optique utilisant celui-ci et procédé servant à produire un film d'alignement optique

Hitoshi Kondo; Yasuhiro Kuwana; Hirokazu Takada; Vladimir Grigorievich Chigrinov; Hoi-Sing Kwok

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Hirokazu Takada

Hong Kong University of Science and Technology

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H. S. Kwok

Hong Kong University of Science and Technology

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Yuriy Reznikov

National Academy of Sciences of Ukraine

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Elena Prudnikova

Hong Kong University of Science and Technology

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Hitoshi Kondo

Hong Kong University of Science and Technology

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Masanobu Fukuda

Hong Kong University of Science and Technology

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