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    • 1. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20070228943A1
    • 2007-10-04
    • US11692435
    • 2007-03-28
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • H01J1/63
    • H01L51/5265H01L27/322H01L2251/5315H05B33/22Y10S428/917
    • In an organic EL device having a first electrode of a light reflective material, organic layer including an organic light emitting layer, semitransparent reflection layer, and second electrode of a transparent material that are stacked sequentially, and so configured that the organic layer functions as a cavity portion of a cavity structure, light that resonates in a certain spectral width (wavelength λ) is extracted by so configuring that optical path length L becomes minimum in a range satisfying (2L)/λ+Φ((2π)=m (m is an integer) where the phase shift produced in light generated in the organic light emitting layer when reflected by opposite ends of the cavity portion is Φ radians, L is optical path length of the cavity portion, and λ is the peak wavelength of the spectrum of part of light to be extracted.
    • 在具有光反射材料的第一电极的有机EL器件中,有机层包括依次堆叠的有机发光层,半透明反射层和透明材料的第二电极,并且被配置为有机层用作 通过使得光程长度L在满足(2L)/λ+ Phi((2pi)= m(m))的范围内变为最小的方式来提取腔结构的空腔部分,以一定的光谱宽度(波长λ)谐振的光 是整数),其中在由空腔部分的相对端反射时在有机发光层中产生的光产生的相移是Phi弧度,L是空腔部分的光程长度,λ是光谱的峰值波长 部分光被提取。
    • 2. 发明授权
    • Display device with a cavity structure for resonating light
    • 具有谐振光的腔结构的显示装置
    • US07102282B1
    • 2006-09-05
    • US09889532
    • 2000-11-22
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • H05B33/02
    • H01L51/5265H01L27/322H01L2251/5315H05B33/22Y10S428/917
    • In an organic EL device having a first electrode of a light reflective material, organic layer including an organic light emitting layer, semitransparent reflection layer, and second electrode of a transparent material that are stacked sequentially, and so configured that the organic layer functions as a cavity portion of a cavity structure, light that resonates in a certain spectral width (wavelength λ) is extracted by so configuring that optical path length L becomes minimum in a range satisfying (2L)/λ+Φ(2Π)=m (m is an integer) where the phase shift produced in light generated in the organic light emitting layer when reflected by opposite ends of the cavity portion is Φ radians, L is optical path length of the cavity portion, and λ is the peak wavelength of the spectrum of part of light to be extracted.
    • 在具有光反射材料的第一电极的有机EL器件中,有机层包括依次堆叠的有机发光层,半透明反射层和透明材料的第二电极,并且被配置为有机层用作 通过使得在满足(2L)/λ+ Phi(2Pi)= m的范围内的光程长度L变为最小的情况下,提取以一定的光谱宽度(波长λ)共振的光,m 一个整数),其中在由空腔部分的相对端反射时在有机发光层中产生的光产生的相移是Phi弧度,L是空腔部分的光程长度,λ是光谱的峰值波长 部分光被提取。
    • 3. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20060175966A1
    • 2006-08-10
    • US11379323
    • 2006-04-19
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • H01L51/52H05B33/02
    • H01L51/5265H01L27/322H01L2251/5315H05B33/22Y10S428/917
    • In an organic EL device having a first electrode of a light reflective material, organic layer including an organic light emitting layer, semitransparent reflection layer, and second electrode of a transparent material that are stacked sequentially, and so configured that the organic layer functions as a cavity portion of a cavity structure, light that resonates in a certain spectral width (wavelength λ) is extracted by so configuring that optical path length L becomes minimum in a range satisfying (2L)/λ+Φ((2π)=m (m is an integer) where the phase shift produced in light generated in the organic light emitting layer when reflected by opposite ends of the cavity portion is Φ radians, L is optical path length of the cavity portion, and λ is the peak wavelength of the spectrum of part of light to be extracted.
    • 在具有光反射材料的第一电极的有机EL器件中,有机层包括依次堆叠的有机发光层,半透明反射层和透明材料的第二电极,并且被配置为有机层用作 通过使得光程长度L在满足(2L)/λ+ Phi((2pi)= m(m))的范围内变为最小的方式来提取腔结构的空腔部分,以一定的光谱宽度(波长λ)谐振的光 是整数),其中在由空腔部分的相对端反射时在有机发光层中产生的光产生的相移是Phi弧度,L是空腔部分的光程长度,λ是光谱的峰值波长 部分光被提取。
    • 4. 发明授权
    • Display device using an organic electroluminescence device having resonant cavity
    • 使用具有谐振腔的有机电致发光元件的显示装置
    • US07710025B2
    • 2010-05-04
    • US11692435
    • 2007-03-28
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • H05B33/02H01L51/52
    • H01L51/5265H01L27/322H01L2251/5315H05B33/22Y10S428/917
    • In an organic EL device having a first electrode of a light reflective material, organic layer including an organic light emitting layer, semitransparent reflection layer, and second electrode of a transparent material that are stacked sequentially, and so configured that the organic layer functions as a cavity portion of a cavity structure, light that resonates in a certain spectral width (wavelength λ) is extracted by so configuring that optical path length L becomes minimum in a range satisfying (2L)/λ+Φ((2π)=m (m is an integer) where the phase shift produced in light generated in the organic light emitting layer when reflected by opposite ends of the cavity portion is Φ radians, L is optical path length of the cavity portion, and λ is the peak wavelength of the spectrum of part of light to be extracted.
    • 在具有光反射材料的第一电极的有机EL器件中,有机层包括依次层叠的有机发光层,半透明反射层和透明材料的第二电极,并且被配置为有机层用作 通过使得光程长度L在满足(2L)/λ+Φ((2&pgr;)= m(2))的范围内变为最小的情况下,提取谐振腔结构的空腔部分,以一定的光谱宽度(波长λ) m是整数),其中在由空腔部分的相对端反射时在有机发光层中产生的光产生的相移为Φ弧度,L为空腔部分的光程长度,λ为峰值波长 要提取的部分光谱。
    • 5. 发明授权
    • Display device
    • 显示设备
    • US07218049B2
    • 2007-05-15
    • US11379323
    • 2006-04-19
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • Jiro YamadaTatsuya SasaokaTakashi Hirano
    • H05B33/02H01L51/52
    • H01L51/5265H01L27/322H01L2251/5315H05B33/22Y10S428/917
    • In an organic EL device having a first electrode of a light reflective material, organic layer including an organic light emitting layer, semitransparent reflection layer, and second electrode of a transparent material that are stacked sequentially, and so configured that the organic layer functions as a cavity portion of a cavity structure, light that resonates in a certain spectral width (wavelength λ) is extracted by so configuring that optical path length L becomes minimum in a range satisfying (2L)/λ+Φ((2π)=m (m is an integer) where the phase shift produced in light generated in the organic light emitting layer when reflected by opposite ends of the cavity portion is Φ radians, L is optical path length of the cavity portion, and λ is the peak wavelength of the spectrum of part of light to be extracted.
    • 在具有光反射材料的第一电极的有机EL器件中,有机层包括依次堆叠的有机发光层,半透明反射层和透明材料的第二电极,并且被配置为有机层用作 通过使得光程长度L在满足(2L)/λ+ Phi((2pi)= m(m))的范围内变为最小的方式来提取腔结构的空腔部分,以一定的光谱宽度(波长λ)谐振的光 是整数),其中在由空腔部分的相对端反射时在有机发光层中产生的光产生的相移是Phi弧度,L是空腔部分的光程长度,λ是光谱的峰值波长 部分光被提取。
    • 9. 发明授权
    • Organic electroluminescence device with silver alloy anode and method of manufacturing the same
    • 具有银合金阳极的有机电致发光器件及其制造方法
    • US08937428B2
    • 2015-01-20
    • US11899431
    • 2007-09-06
    • Koji HanawaJiro YamadaTakashi Hirano
    • Koji HanawaJiro YamadaTakashi Hirano
    • H01J1/62H01J63/04H01L51/52
    • H01L51/5218C22C5/06C22C5/08H01L51/5012H01L51/5088H01L51/5206H01L51/5221H01L51/5225H01L51/5231H01L51/5234H01L51/5262H01L51/5265H01L2251/301H01L2251/308H01L2251/5315
    • Provided are an organic electroluminescence device capable of enhancing reflectance of an anode, thereby resulting in improved light-emitting efficiency and a method of manufacturing the same. An anode (12), a thin film layer for hole injection (13), an insulating layer (14), an organic layer (15) including a luminescent layer (15C) and a cathode (16) including a semi-transparent electrode (16A) are laminated in order on a substrate (11). The anode (12) comprises silver which is a metal with high reflectance or an alloy including silver, and the thin film layer for hole injection (13) comprises chromium oxide or the like. Light generated in the luminescent layer (15C) is multiply reflected between the anode (12) and the semi-transparent electrode (16A) to be emitted from the cathode (16). As the reflectance of the anode (12) is enhanced, the light generated in the luminescent layer (15C) can be efficiently emitted. An alloy comprised in the anode (12) preferably includes silver, palladium and copper, and a silver content is preferably 50% by mass or over.
    • 提供能够提高阳极反射率的有机电致发光器件,从而提高发光效率及其制造方法。 阳极(12),用于空穴注入的薄膜层(13),绝缘层(14),包括发光层(15C)的有机层(15)和包括半透明电极的阴极(16) 16A)依次层叠在基板(11)上。 阳极(12)包括银,其是具有高反射率的金属或包括银的合金,并且用于空穴注入的薄膜层(13)包括氧化铬等。 在发光层(15C)中产生的光在阳极(12)和半透明电极(16A)之间被反射,从阴极(16)发射。 随着阳极(12)的反射率增强,可以有效地发射在发光层(15C)中产生的光。 包含在阳极(12)中的合金优选包括银,钯和铜,并且银含量优选为50质量%以上。