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    • 1. 发明授权
    • Organic light emitting diode (OLED) device
    • 有机发光二极管(OLED)器件
    • US08476624B1
    • 2013-07-02
    • US13486105
    • 2012-06-01
    • Chang-Yen WuTing-Yi ChoMeng-Ting LeeMeng-Huan HoPo-Hsuan ChiangChieh-Wei Chen
    • Chang-Yen WuTing-Yi ChoMeng-Ting LeeMeng-Huan HoPo-Hsuan ChiangChieh-Wei Chen
    • H01L51/52
    • H01L27/3209H01L51/5004H01L51/506H01L51/5076H01L51/5221H01L51/5278H01L2251/5353H01L2251/5376
    • In one aspect of the invention, an organic light emitting diode device has a substrate, a cathode formed on the substrate, an anode spaced-apart from the cathode, a plurality of electroluminescent units stacked between the cathode and the anode, and a plurality of charge generation layers, each of which is formed between two adjacent electroluminescent units. Each electroluminescent unit has an electron-transport layer, an emission layer formed on the electron-transport layer, and a hole-transport layer formed on the emission layer. The electron-transport layer of the first electroluminescent unit is formed on the cathode, defining a first energy barrier, and the anode is formed on the hole-transport layer of the last electroluminescent unit, defining a second energy barrier. The first energy barrier is higher than the second energy barrier. The first electroluminescent unit has a lifetime longer than that of each of the rest electroluminescent units.
    • 在本发明的一个方面中,有机发光二极管器件具有衬底,形成在衬底上的阴极,与阴极间隔开的阳极,堆叠在阴极和阳极之间的多个电致发光单元,以及多个 电荷产生层,其各自形成在两个相邻的电致发光单元之间。 每个电致发光单元具有电子传输层,形成在电子传输层上的发射层和形成在发射层上的空穴传输层。 第一电致发光单元的电子传输层形成在阴极上,限定第一能量势垒,并且阳极形成在最后的电致发光单元的空穴传输层上,限定第二能量势垒。 第一个能量屏障高于第二个能量屏障。 第一电致发光单元的寿命比其余电致发光单元的寿命长。
    • 6. 发明申请
    • WHITE ORGANIC LIGHT ELECTROLUMINESCENCE DEVICE
    • 白色有机电致发光器件
    • US20120161111A1
    • 2012-06-28
    • US13069377
    • 2011-03-22
    • Po-Hsuan ChiangChun-Liang LinChieh-Wei Chen
    • Po-Hsuan ChiangChun-Liang LinChieh-Wei Chen
    • H01L51/52
    • H01L27/3209H01L51/504H01L51/5044H01L2251/5376
    • A white organic light electroluminescence device includes a first light emitting unit, a second light emitting unit and a connecting layer between the first light emitting unit and the second light emitting unit. The connecting layer electrically connects the first light emitting unit and the second light emitting unit in series. The first light emitting unit includes a first electrode layer, a first light emitting layer on first electrode layer, and an intrinsic layer. The first light emitting layer has a first blue light emitting layer and a red light emitting layer, and the intrinsic layer is between the first blue light emitting layer and the red light emitting layer. The second light emitting unit includes a second light emitting layer and a second electrode layer on the second light emitting layer. The second light emitting layer has a second blue light emitting layer and a green light emitting layer.
    • 白色有机光电致发光器件包括第一发光单元,第二发光单元和第一发光单元与第二发光单元之间的连接层。 连接层串联电连接第一发光单元和第二发光单元。 第一发光单元包括第一电极层,第一电极层上的第一发光层和本征层。 第一发光层具有第一蓝色发光层和红色发光层,本征层位于第一蓝色发光层与红色发光层之间。 第二发光单元包括在第二发光层上的第二发光层和第二电极层。 第二发光层具有第二蓝色发光层和绿色发光层。
    • 7. 发明申请
    • Reconfigurable organic light-emitting device and display apparatus employing the same
    • 可重构的有机发光装置和采用该有机发光装置的显示装置
    • US20050040392A1
    • 2005-02-24
    • US10642745
    • 2003-08-19
    • Chung-Chih WuChieh-Wei ChenTing-Yi Cho
    • Chung-Chih WuChieh-Wei ChenTing-Yi Cho
    • H01L27/32H01L35/24H01L51/50H01L51/52
    • H01L51/5036H01L27/3211H01L51/5096H01L51/529
    • A reconfigurable organic light-emitting device and the display apparatus employing such organic light-emitting device, wherein the reconfigurable organic light-emitting device comprises at least two organic light-emitting layers and at least one high-energy-gap carrier-blocking layer. The at least one high-energy-gap carrier-blocking layer is formed between each of the organic light-emitting layers. The structure of the reconfigurable organic light-emitting device can be reconfigured through heating, and the reconfigurable organic light-emitting device may thus emit light characteristic of one layer of the at least two organic light-emitting layers, after a bias voltage is applied on the upper electrode and the lower electrode of the reconfigurable organic light-emitting device. The heating may be performed with a built-in resistive heating source, an external heating source or a light-beam. By employing the reconfigurable organic light-emitting device, fixed-pattern, passive-matrix, and active-matrix display apparatus of multi-color or full-color may further be fabricated.
    • 一种可重构有机发光装置和采用这种有机发光装置的显示装置,其中可重新配置的有机发光装置包括至少两个有机发光层和至少一个高能隙载流子阻挡层。 在每个有机发光层之间形成至少一个高能隙载流子阻挡层。 可重新配置的有机发光装置的结构可以通过加热来重新配置,并且可重新配置的有机发光装置因此可以在施加偏置电压之后发射至少两个有机发光层的一层的光特性 可重新配置的有机发光装置的上电极和下电极。 加热可以用内置的电阻加热源,外部加热源或光束进行。 通过采用可重构有机发光装置,可以进一步制造多色或全色的固定图案,无源矩阵和有源矩阵显示装置。
    • 9. 发明申请
    • ORGANIC LIGHT EMITTING DEVICE
    • 有机发光装置
    • US20120298967A1
    • 2012-11-29
    • US13210388
    • 2011-08-16
    • Ting-Yi ChoChieh-Wei Chen
    • Ting-Yi ChoChieh-Wei Chen
    • H01L51/54
    • H01L51/5072H01L51/5004H01L51/5092H01L2251/552
    • An organic light emitting device is provided and suitable for being disposed on a substrate. The organic light emitting device includes a cathode layer, a buffer layer, a material layer, an organic light emitting layer and an anode layer. The cathode layer is disposed on the substrate. The buffer layer is disposed on and contacts the cathode layer, and the cathode layer is disposed between the substrate and the buffer layer. The material layer is disposed on and contacts the buffer layer, and the buffer layer is disposed between the cathode layer and the material layer, wherein a difference between a lowest unoccupied molecular orbital of the buffer layer and a highest occupied molecular orbital of the material layer is smaller than 2 eV. The organic light emitting layer is disposed on the material layer. The anode layer is disposed on the organic light emitting layer.
    • 提供有机发光装置,适合于设置在基板上。 有机发光器件包括阴极层,缓冲层,材料层,有机发光层和阳极层。 阴极层设置在基板上。 缓冲层设置在阴极层上并与阴极层接触,阴极层设置在衬底和缓冲层之间。 材料层设置在缓冲层上并与缓冲层接触,并且缓冲层设置在阴极层和材料层之间,其中缓冲层的最低未占据的分子轨道与材料层的最高占据分子轨道之间的差 小于2eV。 有机发光层设置在材料层上。 阳极层设置在有机发光层上。