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    • 5. 发明申请
    • Non-Common Capping Layer on an Organic Device
    • 有机设备上的非公共封盖层
    • US20120319145A1
    • 2012-12-20
    • US13163132
    • 2011-06-17
    • Michael S. WeaverMichael Hack
    • Michael S. WeaverMichael Hack
    • H01L33/08H01L33/48
    • H01L27/3211H01L27/322H01L51/5256H01L51/5265H01L51/5275
    • A first method comprises providing a plurality of organic light emitting devices (OLEDs) on a first substrate. Each of the OLEDs includes a transmissive top electrode. The plurality of OLEDs includes a first portion of OLEDs and a second portion of OLEDs that is different from the first portion. The first method further includes depositing a first capping layer over at least the first portion of the plurality of OLEDs such that the first capping layer is optically coupled to at least the first portion of the plurality of OLEDs. A second capping layer is deposited over at least the second portion of the plurality of OLEDs such that the second capping layer is optically coupled to the second portion of the plurality of OLEDs but not the first portion of the plurality of OLEDs.
    • 第一种方法包括在第一衬底上提供多个有机发光器件(OLED)。 每个OLED包括透射顶电极。 多个OLED包括OLED的第一部分和不同于第一部分的OLED的第二部分。 第一种方法还包括在多个OLED的至少第一部分上沉积第一覆盖层,使得第一覆盖层光学耦合到多个OLED的至少第一部分。 第二覆盖层沉积在多个OLED的至少第二部分上,使得第二覆盖层光学耦合到多个OLED的第二部分,但不耦合到多个OLED的第一部分。
    • 9. 发明授权
    • Method of fabricating electrodes
    • 电极制作方法
    • US06569697B2
    • 2003-05-27
    • US09931939
    • 2001-08-20
    • Min-Hao Michael LuMichael S. WeaverMichael Hack
    • Min-Hao Michael LuMichael S. WeaverMichael Hack
    • H01L51140
    • H01L51/5203H01L27/3244H01L51/0059H01L51/0078H01L51/0081H01L2251/5315Y10T428/24917
    • A method of fabricating a device is provided. A substrate having first conductive layer disposed thereon. An organic layer is fabricated over the first conductive layer. A second conductive layer is then fabricated over the organic layer such that the second conductive layer is in electrical contact with the first conductive layer during at least a portion of the step of depositing the second conductive layer. The electrical contact between the first conductive layer and the second conductive layer is then broken. A method of fabricating an active matrix array of organic light emitting devices is also provided. A substrate is obtained, having circuitry adapted to control the current flowing through each organic light emitting device, and having a first conductive layer disposed thereon, such that the first conductive layer is electrically attached to the circuitry. An organic layer is fabricated over the first conductive layer. A second conductive layer is then fabricated over the organic layer such that the second conductive layer is in electrical contact with the circuitry, and such that the circuitry allows sufficient leakage between the first conductive layer and the second conductive layer to reduce the electrical field across the organic layer, during at least a portion of the step of fabricating the second conductive layer. The electrical contact between the circuitry and the second conductive layer is then broken.
    • 提供了一种制造器件的方法。 具有设置在其上的第一导电层的衬底。 在第一导电层上制造有机层。 然后在有机层上制造第二导电层,使得第二导电层在沉积第二导电层的步骤的至少一部分期间与第一导电层电接触。 然后,第一导电层和第二导电层之间的电接触断开。 还提供了制造有机发光器件的有源矩阵阵列的方法。 获得具有适于控制流过每个有机发光器件的电流并且具有设置在其上的第一导电层的电路的衬底,使得第一导电层电连接至电路。 在第一导电层上制造有机层。 然后在有机层上制造第二导电层,使得第二导电层与电路电接触,并且使得电路允许第一导电层和第二导电层之间的足够的泄漏,以减少横跨 在制造第二导电层的步骤的至少一部分期间的有机层。 然后电路和第二导电层之间的电接触断开。