会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Method of manufacturing organic EL element
    • 制造有机EL元件的方法
    • US06727513B2
    • 2004-04-27
    • US10465856
    • 2003-06-20
    • Natsuo FujimoriMasaya Ishida
    • Natsuo FujimoriMasaya Ishida
    • H01L2906
    • H01L51/0005H01L51/5012
    • The invention ensures that a liquid is placed in a predetermined region (without being placed in an adjacent region) with a uniform thickness in the region, when a light emitting layer constituting an organic EL element is placed by, for example, ink jet process. Thin SiO2 film pattern having an opening is formed on an ITO electrode. Next, ultrathin organic film pattern having an opening is formed on a thin SiO2 film pattern. The surface of the ultrathin organic film pattern becomes repellent to liquid. Hole transporting layer is formed in the opening of the ultrathin organic film pattern, and then liquid containing a material for the formation of light emitting layer is discharged thereon by ink jet process. Fluid does not remain on the surface of the ultrathin organic film pattern and instead enters the opening of the ultrathin organic film pattern.
    • 本发明通过例如喷墨法将构成有机EL元件的发光层配置在该区域中,将液体放置在均匀厚度的规定区域(不放置在相邻区域)。 在ITO电极上形成具有开口的薄SiO 2膜图案。 接下来,在薄的SiO 2膜图案上形成具有开口的超薄有机膜图案。 超薄有机膜图案的表面成为驱避液体的表面。 在超薄有机膜图案的开口中形成空穴输送层,然后通过喷墨法将含有用于形成发光层的材料的液体排出。 流体不会残留在超薄有机膜图案的表面上,而是进入超薄有机膜图案的开口。
    • 9. 发明申请
    • Electrochemical cell structure and method of fabrication
    • 电化学电池结构及制造方法
    • US20070122933A1
    • 2007-05-31
    • US11598670
    • 2006-11-14
    • Barry McGregorMasaya Ishida
    • Barry McGregorMasaya Ishida
    • H01L21/00
    • H01G9/2081B82Y20/00G02F1/1506G02F1/1533G02F2202/04G02F2202/36G02F2203/34H01G9/2031H01G9/2063H01L51/0004H01L51/0005H01L51/0007Y02E10/542Y02E10/549Y10T29/49115
    • An electrochemical cell and a method of manufacturing the same are provided. The electrochemical cell comprises: a first conductive layer; a metal oxide layer provided on the first conductive layer, the metal oxide layer comprising a plurality of adjacent metal oxide cells, spaced from one another; a functional dye layer provided on the metal oxide layer; a second conductive layer; an electrolyte layer provided between the functional dye layer and the second conductive layer, wherein at least one of the first and second conductive layers is transparent; and wherein the functional dye layer is formed from an organic solvent ink. In another embodiment, the electrochemical cell comprises: a first conductive layer; a metal oxide layer provided on the first conductive layer; a functional dye layer provided on the metal oxide layer; a second conductive layer; and an electrolyte provided between the functional dye layer and the second conductive layer, wherein at least one of the first and second conductive layers is transparent; and wherein the functional dye layer is formed from a binary solvent ink, comprising a first solvent and a second solvent.
    • 提供电化学电池及其制造方法。 电化学电池包括:第一导电层; 设置在所述第一导电层上的金属氧化物层,所述金属氧化物层包括彼此间隔开的多个相邻的金属氧化物电池; 设置在所述金属氧化物层上的功能染料层; 第二导电层; 设置在功能染料层和第二导电层之间的电解质层,其中第一和第二导电层中的至少一个是透明的; 并且其中所述功能染料层由有机溶剂油墨形成。 在另一实施例中,电化学电池包括:第一导电层; 设置在所述第一导电层上的金属氧化物层; 设置在所述金属氧化物层上的功能染料层; 第二导电层; 以及设置在功能性染料层和第二导电层之间的电解质,其中第一和第二导电层中的至少一个是透明的; 并且其中所述功能染料层由包含第一溶剂和第二溶剂的二元溶剂油墨形成。
    • 10. 发明申请
    • Electrochemical cell structure and method of fabrication
    • 电化学电池结构及制造方法
    • US20070122930A1
    • 2007-05-31
    • US11598751
    • 2006-11-14
    • Barry McGregorMasaya IshidaTatsuya Shimoda
    • Barry McGregorMasaya IshidaTatsuya Shimoda
    • H01L31/00H01L21/00H01L21/8242
    • H01G9/2081H01G9/2031H01G9/2063H01L27/307H01L51/0005Y02E10/542
    • An electrochemical cell and a method of manufacturing the same is provided. The electrochemical cell comprises a first conductive layer; a metal oxide layer formed on the first conductive layer, the metal oxide layer comprising a plurality of adjacent metal oxide cells, spaced from one another; a functional dye layer formed on the metal oxide layer; a second conductive layer; and an electrolyte between the functional dye layer and the second conductive layer, wherein at least one of the first and second conductive layers is transparent; and the functional dye layer comprises at least two different coloured functional dyes each having a depth of colour, such that at least some of the plurality of adjacent metal oxide cells have different colours. Alternatively, the electrochemical cell comprises a first conductive layer; a metal oxide layer formed on the first conductive layer, the metal oxide layer comprising a plurality of adjacent metal oxide cells, spaced from one another; a functional dye layer formed on the metal oxide layer; a second conductive layer; and an electrolyte between the functional dye layer and the second conductive layer, wherein at least one of the first and second conductive layers is transparent; and the functional dye layer comprises at least two different depths of colour, such that at least some of the plurality of adjacent metal oxide cells have different depths of colour. In another embodiment, the electrochemical cell further comprises separating means formed on the first conductive layer and surrounding each of the plurality of adjacent metal oxide cells.
    • 提供一种电化学电池及其制造方法。 电化学电池包括第一导电层; 形成在所述第一导电层上的金属氧化物层,所述金属氧化物层包括彼此间隔开的多个相邻的金属氧化物电池; 形成在金属氧化物层上的功能染料层; 第二导电层; 以及功能性染料层和第二导电层之间的电解质,其中第一和第二导电层中的至少一个是透明的; 并且所述功能性染料层包含至少两种具有深度颜色的不同着色的功能染料,使得所述多个相邻的金属氧化物电池中的至少一些具有不同的颜色。 或者,电化学电池包括第一导电层; 形成在所述第一导电层上的金属氧化物层,所述金属氧化物层包括彼此间隔开的多个相邻的金属氧化物电池; 形成在金属氧化物层上的功能染料层; 第二导电层; 以及功能性染料层和第二导电层之间的电解质,其中第一和第二导电层中的至少一个是透明的; 并且所述功能性染料层包含至少两种不同的颜色深度,使得所述多个相邻金属氧化物单元中的至少一些具有不同的颜色深度。 在另一个实施例中,电化学电池还包括形成在第一导电层上并围绕多个相邻金属氧化物单元中的每一个的分离装置。