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    • 2. 发明申请
    • ELECTROCHEMICAL DEVICE MANUFACTURING
    • 电化学设备制造
    • US20140041213A1
    • 2014-02-13
    • US14006999
    • 2012-04-04
    • Peter Andersson ErsmanJun KawaharaKazuya KatohDavid Nilsson
    • Peter Andersson ErsmanJun KawaharaKazuya KatohDavid Nilsson
    • G02F1/155
    • G02F1/155G02F1/15Y10T29/49117
    • A process for manufacturing an electrochemically active device comprising the steps of: —providing a substrate (110) comprising an electrode receiving surface portion (111) having substantially constant wetting tension throughout said electrode receiving surface portion, —providing a plurality of first electrodes (120) directly on said electrode receiving surface portion, —leaving intermediate portions (130) of said electrode receiving surface portion (111) free from said electrodes, —providing a layer of electrolyte (140) covering said plurality of first electrodes (120) and said intermediate portions (130), and —wherein wetting tension of the surfaces of the intermediate portions (130) is arranged to act more repelling on the electrolyte compared to the wetting tension of the surfaces of the plurality of first electrodes (120), whereby, the electrolyte is concentrated to the surfaces of the plurality of first electrodes (120), and the surfaces of the intermediate portions (130) are substantially free of electrolyte.
    • 一种用于制造电化学活性器件的方法,包括以下步骤: - 提供包括在整个电极接收表面部分具有基本上恒定的湿润张力的电极接收表面部分(111)的衬底(110), - 提供多个第一电极(120 )直接在所述电极接收表面部分上, - 使所述电极接收表面部分(111)的中间部分(130)不含所述电极, - 提供覆盖所述多个第一电极(120)的电解质层(140)和所述 中间部分(130),并且其中中间部分(130)的表面的润湿张力被布置成与多个第一电极(120)的表面的润湿张力相比对电解液起更大的排斥作用, 电解质集中到多个第一电极(120)的表面,并且中间部分(130)的表面是s 大体上没有电解质。
    • 4. 发明授权
    • Electrochemical device manufacturing
    • 电化学装置制造
    • US09494839B2
    • 2016-11-15
    • US14006999
    • 2012-04-04
    • Peter Andersson ErsmanJun KawaharaKazuya KatohDavid Nilsson
    • Peter Andersson ErsmanJun KawaharaKazuya KatohDavid Nilsson
    • G02F1/155G02F1/15
    • G02F1/155G02F1/15Y10T29/49117
    • A process for manufacturing an electrochemically active device comprising the steps of: —providing a substrate (110) comprising an electrode receiving surface portion (111) having substantially constant wetting tension throughout said electrode receiving surface portion, —providing a plurality of first electrodes (120) directly on said electrode receiving surface portion, —leaving intermediate portions (130) of said electrode receiving surface portion (111) free from said electrodes, —providing a layer of electrolyte (140) covering said plurality of first electrodes (120) and said intermediate portions (130), and—wherein wetting tension of the surfaces of the intermediate portions (130) is arranged to act more repelling on the electrolyte compared to the wetting tension of the surfaces of the plurality of first electrodes (120), whereby, the electrolyte is concentrated to the surfaces of the plurality of first electrodes (120), and the surfaces of the intermediate portions (130) are substantially free of electrolyte.
    • 一种用于制造电化学活性器件的方法,包括以下步骤: - 提供包括在整个电极接收表面部分具有基本上恒定的湿润张力的电极接收表面部分(111)的衬底(110), - 提供多个第一电极(120 )直接在所述电极接收表面部分上, - 使所述电极接收表面部分(111)的中间部分(130)不含所述电极, - 提供覆盖所述多个第一电极(120)的电解质层(140)和所述 中间部分(130),并且其中中间部分(130)的表面的润湿张力被布置成与多个第一电极(120)的表面的润湿张力相比对电解液起更大的排斥作用, 电解质集中到多个第一电极(120)的表面,并且中间部分(1)的表面 30)基本上不含电解质。
    • 6. 发明申请
    • LIGHT TRANSMISSIBLE SOLAR CELL MODULE, PROCESS FOR MANUFACTURING SAME, AND SOLAR CELL PANEL THEREOF
    • 光可透射太阳能电池模块,其制造方法及其太阳能电池板
    • US20080203965A1
    • 2008-08-28
    • US11678377
    • 2007-02-23
    • Kazuya KatohYasukazu Nakata
    • Kazuya KatohYasukazu Nakata
    • H01L31/042
    • H01L31/042H01L31/02008H01L31/043H01L31/0508H01L31/0547Y02E10/52
    • A light transmissible solar cell module including: solar cell units, which include a transparent substrate, a mirror electrode layer provided on a part of a surface of the transparent substrate, and a solar cell section provided on the mirror electrode layer, arranged in multi-levels; a first connecting wire electrically connected to an electrode provided on a surface side of the solar cell section; and a second connecting wire electrically connected to the mirror electrode layer, wherein the solar cell units are arranged so that a light entering from one side hits the solar cell section of an arbitrary solar cell unit and is reflected, and the reflected light reaches another side by being reflected by the mirror electrode layer of a solar cell unit arranged adjacent to the arbitrary solar cell unit.
    • 一种透光太阳能电池模块,包括:太阳能电池单元,其包括透明基板,设置在所述透明基板的一部分表面上的镜电极层和设置在所述镜电极层上的太阳能电池单元, 水平; 电连接到设置在太阳能电池部分的表面侧的电极的第一连接线; 以及电连接到镜电极层的第二连接线,其中太阳能电池单元被布置成使得从一侧进入的光撞击任意太阳能电池单元的太阳能电池部分并被反射,并且反射光到达另一侧 通过由与任意的太阳能电池单元相邻配置的太阳能电池单元的镜面电极层反射。