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    • 1. 发明申请
    • Integrated light emitting diode displays using biofabrication
    • 使用生物制造的集成发光二极管显示器
    • US20060286686A1
    • 2006-12-21
    • US11288498
    • 2005-11-28
    • Kwok-Wai LemBrian WalkerKalluri SarmaPeter Smith
    • Kwok-Wai LemBrian WalkerKalluri SarmaPeter Smith
    • H01L21/00
    • B82Y10/00H01L27/156H01L27/3211H01L33/005H01L51/0093
    • A method of manufacturing an integrated light emitting diode display is provided. In one exemplary embodiment, the method includes the step of biologically forming a pn junction over a substrate, the pn junction capable of emitting a light having a predetermined color upon the application of energy thereto. In another exemplary embodiment, a method of manufacturing a light emitting diode is provided. The method includes depositing a biological material over the substrate, the biological material having an affinity for a pn junction material, and exposing the deposited biological material to the first pn junction material to form a doped area of a pn junction. In still another exemplary embodiment, a light emitting diode is provided. The light emitting diode includes a substrate and a biologically formed pn junction disposed over the substrate, wherein light having a predetermined color is emitted upon application of energy to the pn junction.
    • 提供一种制造集成发光二极管显示器的方法。 在一个示例性实施例中,该方法包括在衬底上生物地形成pn结的步骤,该pn结能够在施加能量时发射具有预定颜色的光。 在另一示例性实施例中,提供了一种制造发光二极管的方法。 该方法包括在衬底上沉积生物材料,所述生物材料对pn结材料具有亲和力,并将沉积的生物材料暴露于第一pn结材料以形成pn结的掺杂区域。 在又一示例性实施例中,提供了一种发光二极管。 发光二极管包括衬底和布置在衬底上的生物学形成的pn结,其中在向pn结施加能量时发射具有预定颜色的光。
    • 3. 发明授权
    • Physical colored inks and coatings
    • 物理彩色油墨和涂料
    • US06893489B2
    • 2005-05-17
    • US10026570
    • 2001-12-20
    • Kwok-Wai LemRonald P. Rohrbach
    • Kwok-Wai LemRonald P. Rohrbach
    • B05D3/00B05D3/06B05D3/14B05D5/06C09D201/00G02B5/23G06K1/12G09F3/00G09F3/02H05B6/02H05B6/10C09D11/00
    • G06K1/12B05D3/06B05D3/14B05D3/207B05D5/06B33Y70/00G02B5/23
    • A coating, such as ink or paint, is used, where particles in the coating are selected based on electric, magnetic, or light/photo properties, and are dispersed in the coating to provide a desired physical color. In one approach, the application of the coating to the substrate such as paper is controlled using an electric or magnetic field. In another approach, a pattern is formed in a coating on a substrate by targeting an electric, magnetic or photo field to specific locations on the coating. In yet another approach, the color of a coating that is applied to an object is shifted to match a background color so that the coating appears to be erased. In this approach, the coating may be in the form of a label, such as a bar code, that can be read by a scanner at a point of sale location. In another approach a pattern or code is scrambled or removed by applying an electric, magnetic, or photo field to specific locations on the coating or substrate.
    • 使用诸如油墨或涂料的涂层,其中基于电,磁或光/光特性选择涂层中的颗粒,并且分散在涂层中以提供期望的物理颜色。 在一种方法中,使用电场或磁场来控制涂层施加到诸如纸张的基底上。 在另一种方法中,通过将电,磁或光场靶向涂层上的特定位置,在基底上的涂层中形成图案。 在另一种方法中,施加到物体的涂层的颜色被移动以匹配背景颜色,使得涂层看起来被擦除。 在这种方法中,涂层可以是诸如条形码的标签的形式,其可以在销售点位置由扫描仪读取。 在另一种方法中,通过将电场,磁场或照相场施加到涂层或衬底上的特定位置来加扰或去除图案或代码。