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    • 61. 发明申请
    • Composition of Organic Compounds, Optical Film and Method of Production Thereof
    • 有机化合物的组成,光学薄膜及其生产方法
    • US20100085521A1
    • 2010-04-08
    • US12541362
    • 2009-08-14
    • Irina KasianovaEllina Kharatiyan
    • Irina KasianovaEllina Kharatiyan
    • G02F1/13363G02B1/08C09K19/04C09K19/12C09K19/32C09K19/34
    • C09K19/60C09K19/3804C09K19/3809G02B5/3083Y10T428/10Y10T428/1041
    • A composition includes at least one organic compound of a first type of the general formula I and at least one organic compound of a second type of the general structural formula II, wherein Core in formula I is a conjugated organic unit capable of forming a rigid rod-like macromolecule, Gk is a set of ionogenic side-groups providing solubility of the organic compound of the first type in a solvent and give rigidity to the rod-like macromolecule; and wherein Sys in formula II is an at least partially conjugated substantially planar polycyclic molecular system capable of forming board-like supramolecules via π-π-interaction, and X, Y, Z and Q are substituents. The composition is capable of forming a lyotropic liquid crystal solution, which can form a solid retardation layer of biaxial type substantially transparent to electromagnetic radiation in the visible spectral range. The type and degree of biaxiality of the said optical retardation layer is controlled by a molar ratio of the organic compounds of the first and the second type in the composition. An optical film comprising a solid retardation layer formed of the composition, a method of producing the optical film, and a vertical alignment liquid crystal display using said retardation layer are also provided.
    • 组合物包含至少一种通式I的第一类有机化合物和至少一种通式II的第二类型的有机化合物,其中式I中的核心是能够形成刚性棒的共轭有机单元 Gk是一组提供第一类有机化合物在溶剂中的溶解度的离子发生侧基,对棒状高分子具有刚性; 并且其中式II中的Sys是至少部分共轭的基本上平面的多环分子体系,其能够经由和相互作用形成板状超分子,X,Y,Z和Q是取代基。 该组合物能够形成溶致液晶溶液,其可以形成对可见光谱范围内的电磁辐射基本透明的双轴型固体延迟层。 所述光学延迟层的双轴性的类型和程度由组合物中第一种和第二种类型的有机化合物的摩尔比来控制。 还提供了一种包括由该组合物形成的固体相位差层的光学膜,该光学膜的制造方法和使用该延迟层的垂直取向液晶显示器。
    • 62. 发明申请
    • Organic Compound, Optical Film and Method of Production thereof
    • 有机化合物,光学膜及其制造方法
    • US20090269591A1
    • 2009-10-29
    • US12426326
    • 2009-04-20
    • Irina KasianovaDarya Yurchenko
    • Irina KasianovaDarya Yurchenko
    • C08G16/00C09K19/12B05D5/06B32B17/10B32B27/08
    • C09D177/06C09K19/3804C09K19/3809C09K2019/0444Y10T428/31623Y10T428/31725
    • An organic compound has the general structural formula I. In the formula I, Core is a conjugated organic unit capable of forming a rod-like macromolecule, n is a number of the conjugated organic units in the rod-like macromolecule, Gk is a set of ionogenic side-groups, and k is a number of the side-groups in the set Gk. The set of the ionogenic side-groups provide solubility of the organic compound or its salts and give rigidity to the rod-like macromolecule. The number n provides molecule anisotropy that promotes self-assembling of macromolecules in a solution of the organic compound or its salts, forming lyotropic liquid crystal. The solution is capable of forming a solid optical retardation layer of positive A-type substantially transparent to electromagnetic radiation in the visible spectral range. An optical film based on an organic compound of the general formula I and a method of making same are also disclosed.
    • 有机化合物具有通式结构式I.在式I中,Core是能够形成棒状高分子的共轭有机单元,n是棒状高分子中的多个共轭有机单元,G k是一个 的离子源侧基,k是组Gk中的侧基的数目。 一组离子型侧基提供了有机化合物或其盐的溶解性,并且使得棒状大分子具有刚性。 数字n提供分子各向异性,其促进大分子在有机化合物或其盐的溶液中的自组装,形成溶致液晶。 该解决方案能够形成对可见光谱范围内的电磁辐射基本上透明的正A型固体光学延迟层。 还公开了一种基于通式I的有机化合物的光学膜及其制备方法。
    • 68. 发明授权
    • Biopolymer-based optical element
    • 基于生物聚合物的光学元件
    • US06284418B1
    • 2001-09-04
    • US09441244
    • 1999-11-16
    • Debra J. Trantolo
    • Debra J. Trantolo
    • G11B724
    • C09K19/0225C09K19/3804C09K2219/03G02B5/32G03H1/02G03H2001/026G03H2001/0264G03H2250/38G03H2260/36G03H2260/52G11B7/0065G11B7/24044G11B7/245G11C13/042
    • Provided is an optical element comprising a biopolymer having an oriented structure and a photoresponsive compound, such as a photochromic compound, wherein at least a portion of the photoresponsive compound is incorporated within the oriented structure of the biopolymer and wherein the oriented structure is laminar with the planes of the laminar orientation being aligned perpendicular to a surface of the optical element. Preferably, the biopolymer is a liquid crystal polypeptide, such as ferroelectric liquid crystal poly(&ggr;-methyl-L-glutamate), and the photochromic compound is bacteriorhodopsin. Such optical elements may be utilized in a holographic grating, in an optical correlator system such as for pattern recognition, in a dynamic holographic recording system, and in an optical switch.
    • 提供了一种光学元件,其包括具有定向结构的生物聚合物和光响应性化合物,例如光致变色化合物,其中至少一部分光响应化合物结合在生物聚合物的取向结构中,并且其中定向结构与 层状取向的平面垂直于光学元件的表面对准。 优选地,生物聚合物是液晶多糖,例如铁电液晶聚(γ-甲基-L-谷氨酸)),光致变色化合物是细菌视紫红质。 这样的光学元件可以用在全息光栅中,在光学相关器系统中,例如用于图案识别,动态全​​息记录系统和光学开关中。