SELF ALIGNMENT LIQUID CRYSTAL MEDIUM COMPOSITION AND LIQUID CRYSTAL DISPLAY PANEL
申请人:Shenzhen China Star Optoelectronics Technology Co., Ltd.
公开号:US20180057746A1
公开(公告)日:2018-03-01
The present invention provides a self alignment liquid crystal medium composition and a liquid crystal display panel. The self alignment liquid crystal medium composition includes two or more additives, and the two or more additives are selected from a first additive and a second additive; both the molecule structures of the first additive and the second additive comprise two parts, the head group and the tail group. The main function of the head groups of the first additive and the second additive is for being anchored on the substrate with the intermolecular force, and the main function of the tail group R is similar to the function of the PI branch to vertically align the liquid crystal molecules in the steric hindrance manner. With collocation of various additives, the easily gathering property of the additive containing inorganic silicon can be improved to promote the substrate anchoring function of the additive containing organic group.
MANUFACTURE METHOD OF LIQUID CRYSTAL DISPLAY PANEL
申请人:Shenzhen China Star Optoelectronics Technology Co., Ltd.
公开号:US20180046035A1
公开(公告)日:2018-02-15
The present invention provides a manufacture method of a liquid crystal display panel. The graphene/PEDOT:PSS composite transparent conductive films replace the traditional ITO transparent conductive films, and a polar material is mixed in the liquid crystal compound of the liquid crystal display panel. The structural formula of the polar material is A-B, wherein the main function of the head group A is to create the larger intermolecular force between the polar material and the graphene/PEDOT:PSS composite transparent conductive films, and the main function of the tail group B is similar with the function of the PI branch to vertically align the liquid crystal molecules in the steric hindrance manner to act the effect of the vertical alignment; i.e. the polar material can generate a larger intermolecular force with the graphene/PEDOT:PSS composite transparent conductive films, and is vertically aligned on the TFT substrate and the CF substrate.
Bumagin, N. A.; Luzikova, E. V.; Beletskaya, I. P., Russian Journal of Organic Chemistry, 1995, vol. 31, # 11, p. 1487 - 1491
作者:Bumagin, N. A.、Luzikova, E. V.、Beletskaya, I. P.
DOI:——
日期:——
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