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    • 2. 发明授权
    • Organic EL display device and manufacturing method thereof
    • 有机EL显示装置及其制造方法
    • US08558267B2
    • 2013-10-15
    • US13591674
    • 2012-08-22
    • Kazuhiko KaiMasahiro TanakaYoshinori Ishii
    • Kazuhiko KaiMasahiro TanakaYoshinori Ishii
    • H05B33/04
    • H01L51/56H01L51/5246H01L2251/568
    • An organic EL display device manufacturing method that allows the reliability of the organic EL display device having undergone a defect repair process to be improved. Manufacturing method for organic EL display device, method including an organic EL element substrate formation step of forming at least one organic EL element on an organic EL element substrate, the organic EL element including an organic EL film, an anode electrode, reflection electrode that form a first conductive film provided below the organic EL film, a cathode electrode that forms a second conductive film provided above the to organic EL film, resin sealing step of providing a thermoplastic sealing resin to cover the upper side of the organic EL element, defect detection step of detecting a defect in the organic EL element, and defect elimination step of eliminating the defect detected in the defect detection step by irradiating the defect with a laser beam.
    • 有机EL显示装置的制造方法能够提高经历了缺陷修复处理的有机EL显示装置的可靠性。 有机EL显示装置的制造方法,包括在有机EL元件基板上形成至少一个有机EL元件的有机EL元件基板形成工序的方法,所述有机EL元件包括有机EL膜,阳极电极,形成 设置在有机EL膜下方的第一导电膜,形成在有机EL膜上方设置的第二导电膜的阴极电极,提供热塑性密封树脂以覆盖有机EL元件的上侧的树脂密封步骤,缺陷检测 检测有机EL元件中的缺陷的步骤,以及通过用激光束照射缺陷来消除在缺陷检测步骤中检测到的缺陷的缺陷消除步骤。
    • 3. 发明申请
    • Organic EL Display Device and Manufacturing Method Thereof
    • 有机EL显示装置及其制造方法
    • US20120313514A1
    • 2012-12-13
    • US13591674
    • 2012-08-22
    • Kazuhiko KaiMasahiro TanakaYoshinori Ishii
    • Kazuhiko KaiMasahiro TanakaYoshinori Ishii
    • H05B33/04
    • H01L51/56H01L51/5246H01L2251/568
    • An organic EL display device manufacturing method that allows the reliability of the organic EL display device having undergone a defect repair process to be improved. Manufacturing method for organic EL display device, method including an organic EL element substrate formation step of forming at least one organic EL element on an organic EL element substrate, the organic EL element including an organic EL film, an anode electrode, reflection electrode that form a first conductive film provided below the organic EL film, a cathode electrode that forms a second conductive film provided above the to organic EL film, resin sealing step of providing a thermoplastic sealing resin to cover the upper side of the organic EL element, defect detection step of detecting a defect in the organic EL element, and defect elimination step of eliminating the defect detected in the defect detection step by irradiating the defect with a laser beam.
    • 有机EL显示装置的制造方法能够提高经历了缺陷修复处理的有机EL显示装置的可靠性。 有机EL显示装置的制造方法,包括在有机EL元件基板上形成至少一个有机EL元件的有机EL元件基板形成工序的方法,所述有机EL元件包括有机EL膜,阳极电极,形成 设置在有机EL膜下方的第一导电膜,形成在有机EL膜上方设置的第二导电膜的阴极电极,提供热塑性密封树脂以覆盖有机EL元件的上侧的树脂密封步骤,缺陷检测 检测有机EL元件中的缺陷的步骤,以及通过用激光束照射缺陷来消除在缺陷检测步骤中检测到的缺陷的缺陷消除步骤。
    • 5. 发明申请
    • Organic Electroluminescence Display Device and Manufacturing Method Thereof
    • 有机电致发光显示装置及其制造方法
    • US20090115325A1
    • 2009-05-07
    • US12264942
    • 2008-11-05
    • Eiji MatsuzakiYoshinori IshiiSatoru Kase
    • Eiji MatsuzakiYoshinori IshiiSatoru Kase
    • H01J1/62H01J9/22
    • H01L51/5256H01L51/524H01L2251/5315
    • An organic EL element section (1000) is formed on a circuit formation section (102) formed on a circuit board (101). The organic EL element section (1000) is covered with a protective layer (113) including an SiNxOy film. The SiNxOy film has infrared absorption characteristics including: an Si—O—Si stretching vibration absorption peak appearing at energy lower than 1,000 cm−1; an absorption intensity of an Si—N stretching vibration absorption peak appearing in the vicinity of around 870 cm−1 which is 0.75 or more times an absorption intensity of the Si—O—Si stretching vibration absorption peak; and an absorption peak intensity in a range of 2,000 to 4,000 cm−1, which is 5% or less of the absorption intensity of the Si—N stretching vibration absorption peak. Thus, the protective film having an excellent moisture-blocking property may be obtained, and life property of an organic EL display device may be improved.
    • 有机EL元件部(1000)形成在电路基板(101)上形成的电路形成部(102)上。 有机EL元件部分(1000)被包括SiN x O y膜的保护层(113)覆盖。 SiN x O y膜具有红外吸收特性,包括:以低于1000cm -1的能量出现的Si-O-Si伸缩振动吸收峰; 在约870cm -1附近出现的Si-N伸缩振动吸收峰的吸收强度是Si-O-Si伸缩振动吸收峰的吸收强度的0.75倍以上; 以及在2,000〜4000cm -1的范围内的吸收峰强度,其为Si-N伸缩振动吸收峰的吸收强度的5%以下。 因此,可以获得具有优异的防湿性的保护膜,并且可以提高有机EL显示装置的寿命。
    • 7. 发明授权
    • Polarizing plate
    • 偏光板
    • US06726995B2
    • 2004-04-27
    • US10149447
    • 2002-10-23
    • Yoshinori IshiiTakeshi YamamotoTakao UesugiKoichi Watanabe
    • Yoshinori IshiiTakeshi YamamotoTakao UesugiKoichi Watanabe
    • G02B530
    • G02B5/3033G02B1/105G02B1/14Y10T428/24364Y10T428/31573Y10T428/31576Y10T428/31587Y10T428/31855Y10T428/31928Y10T428/31931
    • A polarizing plate with which a drop in polarization efficiency, hue shift, and light leakage do not substantially arise, under a high humidity/high temperature environment is provided. The polarizing plate of the present invention comprises a polyvinyl-alcohol-based polarizing film, a protective film having thereon two anchor coat agent layers, mainly composed of a cyclic-olefin-based resin, laminated on at least one side of the polarizing film, with an adhesive. The amount of change in optical in-plane retardation of the protective film is 5 nm or less after 24 hours in an atmosphere of 80° C., and the wetting tension of the anchor coated surface of the protective film is 500 &mgr;N/cm (23° C.) or more. The anchor coat agent layers include a first layer made of polyisocyanate and polyester polyol and/or polyether polyol, and a second layer made of polyvinyl alcohol. The adhesive is made of polyvinyl alcohol.
    • 提供了在高湿度/高温环境下基本上不出现极化效率下降,色相偏移和漏光的偏振片。 本发明的偏光板包括聚偏二氟乙烯系偏振膜,在偏振膜的至少一侧层叠有主要由环状烯烃系树脂构成的两个保护涂层剂的保护膜, 用粘合剂。 保护膜的光学面内延迟的变化量在80℃的气氛中24小时后为5nm以下,保护膜的涂布表面的润湿张力为500μN/ cm( 23℃)以上。 锚固剂层包括由聚异氰酸酯和聚酯多元醇和/或聚醚多元醇制成的第一层和由聚乙烯醇制成的第二层。 粘合剂由聚乙烯醇制成。
    • 9. 发明授权
    • Method for producing 2-keto-L-gulonic acid
    • 2-酮-L-古洛糖酸的制备方法
    • US5834263A
    • 1998-11-10
    • US696834
    • 1996-09-24
    • Mineo NiwaYoshimasa SaitoYoshinori IshiiMasaru YoshidaHiromi Hayashi
    • Mineo NiwaYoshimasa SaitoYoshinori IshiiMasaru YoshidaHiromi Hayashi
    • C12N9/02C12N9/04C12N15/53C12P7/60C12N1/00C12N15/00
    • C12N9/0008C12N9/0006C12P7/60Y10S435/822
    • An expression vector containing both a DNA encoding an L-sorbose dehydrogenase and a DNA encoding an L-sorbosone dehydrogenase; a transformant having an ability to produce 2-keto-L-gulonic acid (hereinafter 2KLGA) at high yields from D-sorbitol, which is prepared by transforming, with said expression vector, a microorganism capable of producing L-sorbose at high yields from D-sorbitol, which has no or low 2KLGA-decomposing activity or a host microorganism having, in addition to the above-mentioned properties, no or low L-idonic acid-producing activity; and a process for producing 2KLGA, which comprises culturing said transformant in a medium containing D-sorbitol. According to the present invention, 2KLGA useful for the production of L-ascorbic acid can be produced with ease and in larger amounts by a single operation of culture.
    • PCT No.PCT / JP95 / 00285 Sec。 371日期:1996年9月24日 102(e)1996年9月24日PCT提交1995年2月24日PCT公布。 WO95 / 23220 PCT出版物 日期1995年8月31日含有编码L-山梨糖脱氢酶的DNA和编码L-山梨糖酮脱氢酶的DNA的表达载体; 具有从D-山梨醇以高产率生产2-酮-L-古洛糖酸(以下称为2KLGA)的能力的转化体,其通过用所述表达载体转化能以高产率生产L-山梨糖的微生物制备 没有或低的2KLGA分解活性的D-山梨糖醇或除了上述性质之外,没有或低的L-天冬糖酸生产活性的宿主微生物; 以及生产2KLGA的方法,其包括在含有D-山梨糖醇的培养基中培养所述转化体。 根据本发明,用于生产L-抗坏血酸的2KLGA可以通过单次的培养操作容易地和大量地生产。