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    • 63. 发明授权
    • Dye-sensitized solar cell module and manufacturing method for same
    • 染料敏化太阳能电池模块及其制造方法
    • US09257237B2
    • 2016-02-09
    • US13649530
    • 2012-10-11
    • Kenichi Okada
    • Kenichi Okada
    • H01L31/18H01L31/042H01G9/20
    • H01G9/2081H01G9/2022H01G9/2031H01G9/2059Y02E10/542Y02P70/521
    • The present invention is a dye-sensitized solar cell module provided with a pair of mutually opposed electrodes, partitions that connect the pair of electrodes and form a plurality of cell spaces together with the pair of electrodes, and an electrolyte filled into the cell spaces, wherein one electrode of the pair of electrodes has oxide semiconductor portions that face each of the plurality of cell spaces and are loaded with a photosensitizing dye, at least one electrode of the pair of electrodes is composed of at least two layers, the thickest layer is a metal substrate having a thickness of 100 μm or less or a resin film having a thickness of 500 μm or less, and the electrode containing the metal substrate or the resin film has a bending portion that bends so as to protrude towards the opposing electrode.
    • 本发明是一种具有一对相对电极的染料敏化太阳能电池模块,连接该对电极并与一对电极一起形成多个电池空间的隔板以及填充到电池空间中的电解质, 其中,所述一对电极中的一个电极具有面对所述多个电池空间中的每一个且具有光敏染料的氧化物半导体部分,所述一对电极中的至少一个电极由至少两层构成,最厚层为 厚度为100μm以下的金属基板或厚度为500μm以下的树脂薄膜,含有金属基板或树脂薄膜的电极具有弯曲部,以朝向相对的电极突出。
    • 69. 发明授权
    • Dye-sensitized solar cell manufacturing method
    • 染料敏化太阳能电池的制造方法
    • US08293562B2
    • 2012-10-23
    • US13116629
    • 2011-05-26
    • Katsuhiro DoiKenichi Okada
    • Katsuhiro DoiKenichi Okada
    • H01L21/00H01L31/18
    • H01G9/2077H01G9/2031H01G9/2059Y02E10/542Y02P70/521
    • A dye-sensitized solar cell manufacturing method of the invention comprises the steps of: preparing a first electrode having an oxide semiconductor layer and a second electrode; forming a first sealing portion by melting and bonding a thermoplastic resin at a first annular section of the first electrode; forming a second sealing portion by melting and bonding a thermoplastic resin at a second annular section of the second electrode; loading a photosensitive dye on the oxide semiconductor layer; forming an electrolyte layer by arranging an electrolyte on the first electrode within the first sealing portion; and forming a sealing portion through bonding the first and second sealing portions, wherein the electrolyte layer is formed after forming the first sealing portion; the sealing portion is formed after loading the dye and forming the electrolyte layer; and the sealing portion is formed through melting the first and second sealing portions, applying pressure.
    • 本发明的染料敏化太阳能电池制造方法包括以下步骤:制备具有氧化物半导体层和第二电极的第一电极; 通过在第一电极的第一环形部分处熔化和粘合热塑性树脂来形成第一密封部分; 通过在第二电极的第二环形部分处熔化和粘合热塑性树脂来形成第二密封部分; 在所述氧化物半导体层上加载感光性染料; 通过在所述第一密封部分内的所述第一电极上设置电解质来形成电解质层; 以及通过接合所述第一和第二密封部分形成密封部分,其中所述电解质层在形成所述第一密封部分之后形成; 在装载染料并形成电解质层之后形成密封部分; 并且密封部分通过熔化第一和第二密封部分而施加压力而形成。
    • 70. 发明授权
    • Solar cell
    • 太阳能电池
    • US07825330B2
    • 2010-11-02
    • US11022672
    • 2004-12-28
    • Kenichi OkadaHiroshi MatsuiNobuo Tanabe
    • Kenichi OkadaHiroshi MatsuiNobuo Tanabe
    • H01L31/00
    • H01M14/005H01G9/2022H01G9/2031H01G9/2059
    • A solar cell and photovoltaic power generation apparatus including a transparent electrically conductive film, a semiconductor provided on the transparent electrically conductive film, a conductive film opposing the semiconductor, and an electrolyte solution filled between the semiconductor and the conductive film. Metal ions, such as silver ions, may be dissolved in the electrolyte solution. When light is incident on the cell, the metal ions cause an oxidation-reduction reaction in the electrolyte solution and the cell is charged. When the open-circuit voltage decreases because the amount of incident light drops or light is blocked, the cell discharges to function as a secondary cell.
    • 一种太阳能电池和光伏发电装置,包括透明导电膜,设置在透明导电膜上的半导体,与半导体相对的导电膜,以及填充在半导体和导电膜之间的电解质溶液。 诸如银离子的金属离子可以溶解在电解质溶液中。 当光入射到电池上时,金属离子在电解质溶液中引起氧化还原反应,并且电池被充电。 当开路电压降低时,由于入射光的量下降或光线被阻挡,电池放电起二次电池的作用。