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    • 2. 发明申请
    • ELECTROLUMINESCENT ELEMENT, METHOD FOR MANUFACTURING ELECTROLUMINESCENT ELEMENT, DISPLAY DEVICE AND ILLUMINATING DEVICE
    • 电致发光元件,制造电致发光元件的方法,显示装置和照明装置
    • US20120299469A1
    • 2012-11-29
    • US13519599
    • 2010-12-21
    • Kunio KondoKanjiro SakoMasaru TajimaKatsumasa Hirose
    • Kunio KondoKanjiro SakoMasaru TajimaKatsumasa Hirose
    • H05B33/12H05B33/10
    • H01L51/5275H01L27/3281H01L27/329H01L51/5209H05B33/14
    • Disclosed is an electroluminescent element (10) which includes an anode layer (12), a cathode layer (14), a first low refractive index layer (13) that is formed between the anode layer (12) and the cathode layer (14), a recessed portion (16) that penetrates at least the anode layer (12) and the first low refractive index layer (13), a second low refractive index layer (19) that is formed on the bottom of the recessed portion (16), and a light emitting portion (17) that is formed on the second low refractive index layer (19). The electroluminescent element (10) is also characterized in that the refractive index of the first low refractive index layer (13) and the refractive index of the second low refractive index layer (19) are lower than the refractive index of the light emitting portion (17). The electroluminescent element (10) provides an electroluminescent element which has high light-emitting efficiency when the light emitted from the light emitting portion is taken out from the substrate side.
    • 公开了一种电致发光元件(10),其包括形成在阳极层(12)和阴极层(14)之间的阳极层(12),阴极层(14),第一低折射率层(13) ,至少穿透所述阳极层(12)和所述第一低折射率层(13)的凹部(16),形成在所述凹部(16)的底部上的第二低折射率层(19) 和形成在第二低折射率层(19)上的发光部分(17)。 电致发光元件(10)的特征还在于,第一低折射率层(13)的折射率和第二低折射率层(19)的折射率低于发光部分(的折射率) 17)。 电致发光元件(10)提供当从基板侧取出从发光部分发出的光时具有高发光效率的电致发光元件。
    • 5. 发明申请
    • ELECTROLUMINESCENT ELEMENT, ELECTROLUMINESCENT ELEMENT MANUFACTURING METHOD, DISPLAY DEVICE, AND ILLUMINATION DEVICE
    • 电致发光元件,电致发光元件制造方法,显示装置和照明装置
    • US20130161679A1
    • 2013-06-27
    • US13820301
    • 2010-09-02
    • Kunio KondoKanjiro SakoMasaru TajimaKatsumasa Hirose
    • Kunio KondoKanjiro SakoMasaru TajimaKatsumasa Hirose
    • H01L33/36
    • H01L51/5206H01L27/3281H01L51/5016H01L2251/5361H01L2251/5392
    • An electroluminescent element (10) is provided with: an anode layer (12), a cathode layer (14) arranged to face the anode layer (12), pillars (13) formed in the space between the anode layer (12) and the cathode layer (14), and a light emitting layer (17) formed at a location other than the locations where the pillars (13) are formed; and the pillars (13) are formed so that the following conditions (1) and (2) are at least 95% satisfied. With this configuration, an electroluminescent element is provided that is unlikely to suffer from emission unevenness or short circuit and has high durability. (1) At least a part of the pillars (13) is included within a 10-μm diameter circular region the center of which is an arbitrary position on the surface of the anode layer (12). (2) At least a part of the light emitting layer (17) is included within a 20-μm diameter circular region the center of which is an arbitrary position on the surface of the anode layer (12).
    • 电致发光元件(10)设置有阳极层(12),与阳极层(12)相对配置的阴极层(14),在阳极层(12)和阳极层(12)之间的空间中形成的柱 阴极层(14)和形成在除了形成所述柱(13)的位置之外的位置处的发光层(17); 并且支柱(13)形成为使得以下条件(1)和(2)满足至少95%。 利用这种结构,提供了不太可能遭受发光不均匀或短路并且具有高耐久性的电致发光元件。 (1)支柱(13)的至少一部分包括在其中心在阳极层(12)的表面上的任意位置的10个圆形直径的圆形区域内。 (2)发光层(17)的至少一部分被包含在其中心为阳极层(12)的表面的任意位置的直径为20μm的圆形区域内。
    • 10. 发明申请
    • SURFACE TREATMENT METHOD FOR ELECTRODES, ELECTRODE, AND PROCESS FOR PRODUCING ORGANIC ELECTROLUMINESCENT ELEMENT
    • 用于生产有机电致发光元件的电极,电极和工艺的表面处理方法
    • US20120068167A1
    • 2012-03-22
    • US13321392
    • 2010-05-18
    • Kanjiro SakoKunio Kondo
    • Kanjiro SakoKunio Kondo
    • H01L51/52B32B9/04B05D5/12
    • H01L51/5206H01L2251/308Y10T428/31663
    • [Problem] To provide a method for increasing a work function of an electrode by a simple operation and an organic EL element which has an anode of a high work function, exhibits excellent light emission properties (luminous efficiency, lifetime), has a good luminescent surface with small unevenness of luminance and few defects and has low leakage current.[Solution to Problem] A surface treatment method for electrodes, including a contact step of bringing an electrode made from a metal oxide into contact with a solution including a silane compound represented by the following formula (1) and/or a partially hydrolyzed condensate thereof and water, and an organic EL element having a luminescent layer and a cathode laminated in this order on a surface-treated surface of an anode made from a metal oxide, said anode having been surface-treated by the method. Si(OR)p(X)q(OH)4-p-q  (1) wherein in the formula (1), each OR is independently an alkoxy group or an aryloxy group, each X is independently a hydrolyzable group other than the above OR, p is an integer of 1 to 4, q is an integer of 0 to 3, and p+q≦4.
    • 为了提供通过简单的操作提高电极的功函数的方法和具有高功函功能的阳极的有机EL元件,具有优异的发光特性(发光效率,寿命),具有良好的发光性 表面亮度不均匀,缺陷少,漏电流低。 [问题的解决方案]电极的表面处理方法,包括将由金属氧化物制成的电极与包含下式(1)所示的硅烷化合物和/或其部分水解缩合物的溶液接触的接触步骤 和水,以及在由金属氧化物制成的阳极的表面处理表面上依次层叠有发光层和阴极的有机EL元件,所述阳极通过该方法进行表面处理。 Si(OR)p(X)q(OH)4-pq(1)其中在式(1)中,各OR独立地为烷氧基或芳氧基,X各自独立地为除上述OR之外的可水解基团 ,p为1〜4的整数,q为0〜3的整数,p + q≦̸ 4。