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    • 1. 发明公开
    • 나노구조 패턴 제조 방법
    • 纳米结构图形制作方法
    • KR1020080014715A
    • 2008-02-14
    • KR1020070081475
    • 2007-08-13
    • 롬 앤드 하스 덴마크 파이낸스 에이에스
    • 자간나탄,라메쉬라오,위안치아오미,자이앙-동
    • H01L21/02
    • G03F7/0005B82Y20/00G02B2207/101
    • A method for producing a nanostructured pattern is provided to form a nanostructured pattern of a functional material having desirable optical properties and a magnetic, conductive, semi-conductive, or insulating property. A method for producing a nanostructured pattern on a substrate includes the steps of: providing a substrate; coating the substrate with a functional material to form a functional material layer; coating the functional material layer with at least one block copolymer comprising A polymer chains and B polymer chains; drying the block copolymer to form ordered nanodomains; removing the A polymer chains from the dried block copolymer to form voids; and removing the functional material from the sites from which the A polymer chains are removed. Further, the drying step is performed by supplying a shear force external energy.
    • 提供了一种生产纳米结构图案的方法,以形成具有所需光学特性和磁性,导电性,半导电性或绝缘性的功能材料的纳米结构图案。 在衬底上制造纳米结构图案的方法包括以下步骤:提供衬底; 用功能材料涂覆基材以形成功能材料层; 用包含A聚合物链和B聚合物链的至少一种嵌段共聚物涂覆功能材料层; 干燥嵌段共聚物以形成有序的纳米结构域; 从干燥的嵌段共聚物中除去A聚合物链以形成空隙; 并从除去A聚合物链的位点去除功能材料。 此外,通过提供剪切力外部能量来进行干燥步骤。
    • 2. 发明公开
    • 와이어 그리드 폴라라이저
    • 电线极化器
    • KR1020080014714A
    • 2008-02-14
    • KR1020070081404
    • 2007-08-13
    • 롬 앤드 하스 덴마크 파이낸스 에이에스
    • 자간나탄,라메쉬라오,위안치아오미,자이앙-동
    • H01L21/027B82Y40/00
    • G02B5/3058G02B5/1809H01L21/0274B82Y40/00
    • A wire grid polarizer is provided to produce functional materials having a nano structure using a low cost production method and to improve a manufacturing technology for producing the functional materials by using a micro-patterned substrate having channels. A micro-patterned substrate(120) has a channels. Electrical conductive materials(110) are arranged in parallel with the channels and have strip shapes on the micro-patterned substrate. Each of the electrical conductive materials has a width of 10 to 20 nm. The channels have flat bottoms and pitches less than 10 micro meters. The channels have depths of 50 to 600 nm. The electrical conductive material is selected from a group consisting of aluminium, silver, gold, nickel, indium tin oxide, antimony tin oxide, polythiophene, polyaniline, and polyacetylene.
    • 提供线栅偏振器以使用低成本的生产方法制造具有纳米结构的功能材料,并且通过使用具有通道的微图案化衬底来改进制造功能材料的制造技术。 微图案化基板(120)具有通道。 导电材料(110)与沟道平行布置,并且在微图形衬底上具有带状。 每个导电材料具有10至20nm的宽度。 通道的平底部和间距小于10微米。 通道的深度为50至600nm。 导电材料选自铝,银,金,镍,氧化铟锡,氧化锑锡,聚噻吩,聚苯胺,聚乙炔等。
    • 3. 发明公开
    • 특정한 광 변향 필름을 가진 백라이트 장치
    • 背光装置,具有特别的轻量化薄膜
    • KR1020080007532A
    • 2008-01-22
    • KR1020070071920
    • 2007-07-18
    • 롬 앤드 하스 덴마크 파이낸스 에이에스
    • 미,자이앙-동노쓰하드,게리이.진,엘라인더블유.
    • G02F1/1335G02F1/13357
    • G02B6/0053G02B6/0043
    • A back light apparatus having a particular light deflection film is provided to enhance light-mixing of light emitting diodes and to include a single light deflection prism film. A light source(12) generates illumination. A light guide panel(10') has an input surface for transmitting the illumination into a light guide panel, an output surface for offering the output illumination, the longitudinal direction perpendicular to the light input surface, and the horizontal direction in parallel to the light input surface. A light deflection member(75) includes plural prism structures having the selected normal angle, the selected first base angle, and the selected second angle, also includes materials having the selected refraction index, and deflects the light beam at various angles. The light luminescence along 60 degrees of polar angle is about 35% of the light luminescence along the shaft direction perpendicular to the L-W plane. Prism structures are located in parallel to the longitudinal direction of the light guide panel.
    • 提供具有特定光偏转膜的背光装置以增强发光二极管的光混合并且包括单个光偏转棱镜膜。 光源(12)产生照明。 导光板(10')具有用于将照明传输到导光板的输入表面,用于提供输出照明的输出表面,垂直于光输入表面的纵向方向和平行于光的水平方向 输入面。 光偏转构件(75)包括具有所选择的法线角,所选择的第一底角和所选择的第二角度的多个棱镜结构,还包括具有所选折射率的材料,并以各种角度偏转光束。 沿着60度极角的发光是垂直于L-W平面的轴方向的发光的约35%。 棱镜结构与导光板的纵向方向平行。