Method of forming nanoparticle oxide electrode of plastic-type dye-sensitized solar cell using high viscosity nanoparticle oxide paste without binder
    1.
    发明申请
    Method of forming nanoparticle oxide electrode of plastic-type dye-sensitized solar cell using high viscosity nanoparticle oxide paste without binder 审中-公开
    使用不含粘合剂的高粘度纳米氧化物浆料形成塑料型染料敏化太阳能电池的纳米氧化物电极的方法

    公开(公告)号:US20060063296A1

    公开(公告)日:2006-03-23

    申请号:US11146494

    申请日:2005-06-06

    IPC分类号: H01L31/00

    CPC分类号: H01G9/2031 Y02E10/542

    摘要: A method for forming a nanoparticle oxide electrode of a dye-sensitized solar cell is provided. In the method, a basic aqueous solution or an acidic aqueous solution is respectively added to a nanoparticle oxide colloidal solution having a good acidic or basic dispersion, to form a basic nanoparticle oxide paste by an acid-base reaction. Next, after the nanoparticle oxide paste is coated on a substrate, the coated nanoparticle oxide paste is dried at a low temperature of 150° C. or lower. Accordingly, the low-temperature coating nanoparticle oxide paste with high viscosity can be manufactured on the basis of the acid-base reaction, even without the addition of polymer, and accordingly, the nanoparticle oxide electrode can be formed even at a low temperature.

    摘要翻译: 提供了一种形成染料敏化太阳能电池的纳米氧化物电极的方法。 在该方法中,将碱性水溶液或酸性水溶液分别添加到具有良好的酸性或碱性分散性的纳米氧化物胶体溶液中,通过酸碱反应形成碱性纳米氧化物糊剂。 接着,在将纳米氧化物糊剂涂布在基材上之后,在150℃以下的低温下干燥被覆纳米氧化物糊剂。 因此,即使不添加聚合物,也可以在酸碱反应的基础上制造高粘度的低温涂层纳米氧化物糊料,因此即使在低温下也能够形成纳米氧化物电极。

    SOLAR CELLS AND METHODS OF MANUFACTURING THE SAME
    2.
    发明申请
    SOLAR CELLS AND METHODS OF MANUFACTURING THE SAME 审中-公开
    太阳能电池及其制造方法

    公开(公告)号:US20130104986A1

    公开(公告)日:2013-05-02

    申请号:US13452242

    申请日:2012-04-20

    CPC分类号: B82Y20/00 B82Y30/00 B82Y40/00

    摘要: Provided are solar cells and methods of manufacturing the same. The solar cell includes a first electrode, a second electrode facing and separated from the first electrode, and a quantum dot-graphine hybrid composite disposed between the first and second electrodes. Quantum dots are combined with graphine in a π-bond within the quantum dot-graphine hybrid composite.

    摘要翻译: 提供的是太阳能电池及其制造方法。 太阳能电池包括第一电极,面对并与第一电极分离的第二电极,以及设置在第一和第二电极之间的量子点 - 图形混合复合材料。 量子点与量子点 - 图形混合复合材料中的pi-bond中的石墨结合。

    Solar cells and methods of forming the same
    3.
    发明授权
    Solar cells and methods of forming the same 有权
    太阳能电池及其形成方法

    公开(公告)号:US08569615B2

    公开(公告)日:2013-10-29

    申请号:US13014814

    申请日:2011-01-27

    IPC分类号: H01L31/00

    摘要: Provided are solar cells and methods of forming the same. The solar cell includes an anti-reflection layer on a substrate, a first electrode on the anti-reflection layer, a photo-electro conversion layer on the first electrode, and a second electrode on the photo-electro conversion layer.

    摘要翻译: 提供了太阳能电池及其形成方法。 太阳能电池包括在基板上的抗反射层,抗反射层上的第一电极,第一电极上的光电转换层和光电转换层上的第二电极。

    DYE-SENSITIZED SOLAR CELL AND METHOD OF MANUFACTURING THE SAME
    6.
    发明申请
    DYE-SENSITIZED SOLAR CELL AND METHOD OF MANUFACTURING THE SAME 审中-公开
    透明的太阳能电池及其制造方法

    公开(公告)号:US20090211630A1

    公开(公告)日:2009-08-27

    申请号:US12336265

    申请日:2008-12-16

    IPC分类号: H01L31/00 H01L21/20

    摘要: Provided are a dye-sensitized solar cell and a method of manufacturing the same. The dye-sensitized solar cell includes a semiconductor electrode and a counter electrode that face each other, and an electrolytic solution interposed therebetween, wherein the semiconductor electrode includes: a conductive substrate; an oxide semiconductor-conductor structure formed on the conductive substrate; and dye molecules layer adsorbed onto the surface of the oxide semiconductor. A dye-sensitized solar cell manufactured using the method can effectively prevent electrons transferred to the conductor and an electrolyte from recombining, thus having maximal photoelectron conversion efficiency.

    摘要翻译: 提供染料敏化太阳能电池及其制造方法。 染料敏化太阳能电池包括彼此相对的半导体电极和对电极以及插入其间的电解液,其中所述半导体电极包括:导电基板; 形成在导电基板上的氧化物半导体 - 导体结构; 以及吸附在氧化物半导体表面上的染料分子层。 使用该方法制造的染料敏化太阳能电池可以有效地防止转移到导体中的电子和电解质重新结合,从而具有最大的光电转换效率。

    DYE-SENSITIZED SOLAR CELL AND METHOD OF FABRICATING THE SAME
    9.
    发明申请
    DYE-SENSITIZED SOLAR CELL AND METHOD OF FABRICATING THE SAME 审中-公开
    透明的太阳能电池及其制造方法

    公开(公告)号:US20100139761A1

    公开(公告)日:2010-06-10

    申请号:US12546608

    申请日:2009-08-24

    IPC分类号: H01L31/00 H01L31/18

    摘要: Provided are a dye-sensitized solar cell and a method of fabricating the same. The dye-sensitized solar cell includes a lower substrate, an upper substrate, a dielectric, a semiconductor electrode layer, a dye layer, and an electrolyte. The upper substrate is spaced from the lower substrate and has a light emitting surface facing a surface of the lower substrate and a light incident surface opposite to the light emitting surface. The dielectric is disposed on the surface of the lower substrate. The semiconductor electrode layer includes electrode dots disposed on the dielectric. The dye layer is disposed on surfaces of the electrode dots. The electrolyte is disposed between the lower substrate and the upper substrate.

    摘要翻译: 提供了染料敏化太阳能电池及其制造方法。 染料敏化太阳能电池包括下基板,上基板,电介质,半导体电极层,染料层和电解质。 上基板与下基板间隔开,并且具有面向下基板的表面的光发射表面和与发光表面相对的光入射表面。 电介质设置在下基板的表面上。 半导体电极层包括设置在电介质上的电极点。 染料层设置在电极点的表面上。 电解质设置在下基板和上基板之间。

    METHOD OF DESIGNING COMPOSITION OF LIQUID ELECTROLYTE FOR HIGH CHARGE/DISCHARGE RATE
    10.
    发明申请
    METHOD OF DESIGNING COMPOSITION OF LIQUID ELECTROLYTE FOR HIGH CHARGE/DISCHARGE RATE 审中-公开
    设计液体电解质组合物的高充电/放电速率的方法

    公开(公告)号:US20090068564A1

    公开(公告)日:2009-03-12

    申请号:US12039102

    申请日:2008-02-28

    IPC分类号: H01M6/16

    CPC分类号: H01M10/0566 H01M10/052

    摘要: Provided is a method of designing an electrolyte composition including a nonaqueous organic solvent mixture and a lithium salt to obtain an optimal composition ratio of components of the electrolyte composition for a high charging/high-output discharging secondary battery. The method includes: selecting components of the nonaqueous organic solvent mixture; determining composition ratio ranges of the selected components satisfying such conditions that an average dielectric constant, an average viscosity, and an average boiling point satisfy predetermined boundary values; dividing the ranges of the composition ratios into a plurality of groups; selecting a representative composition ratio of each of the groups; adding a lithium salt to a nonaqueous organic solvent mixture having the representative composition ratio to prepare an electrolyte composition; and measuring properties of the electrolyte composition to determine a composition ratio of an electrolyte composition having predetermined properties.

    摘要翻译: 提供一种设计包含非水有机溶剂混合物和锂盐的电解质组合物的方法,以获得用于高充电/高输出放电二次电池的电解质组合物的组分的最佳组成比。 该方法包括:选择非水有机溶剂混合物的组分; 确定所选择的组分的组成比范围满足平均介电常数,平均粘度和平均沸点满足预定边界值的条件; 将组成比的范围除以多个组; 选择每个组的代表性组成比; 向具有代表性组成比的非水有机溶剂混合物中加入锂盐以制备电解质组合物; 以及测定电解质组合物的性质以确定具有预定特性的电解质组合物的组成比。