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    • 5. 发明申请
    • HYBRID TRANSPARENT CONDUCTIVE ELECTRODES
    • 混合透明导电电极
    • WO2010062708A3
    • 2010-08-19
    • PCT/US2009062887
    • 2009-10-30
    • POON HAK FEIROBINSON MATTHEW RERBEN CHRISTOPHERVAN DUREN JEROEN K JSHEATS JAMES R
    • POON HAK FEIROBINSON MATTHEW RERBEN CHRISTOPHERVAN DUREN JEROEN K JSHEATS JAMES R
    • H01L31/042H01L31/05
    • H01L31/1884H01L31/022466H01L31/022483Y02E10/50
    • Methods and devices are provided for improved photovoltaic devices. In one embodiment, the transparent electrode of a thin-film solar cell is replaced in part by a sheet of nanowires. One technique for use in present invention comprises forming a solar cell having: a) a thinner than usual transparent top electrode of a conductive material having a reduced thickness and b) an interconnected network of nanowires in contact with and/or coated by the top electrode. In some embodiments, the top electrode and network of nanowires increases overall power output of the solar cell compared to an otherwise identical cell using only a) a top electrode layer of the material at a thickness and light transmission equal to a combined thickness and light transmission of the top electrode and the network of nanowires, or b) an interconnected network of nanowires of thickness equal to the combined thickness and light transmission.
    • 为改进的光伏器件提供了方法和装置。 在一个实施例中,薄膜太阳能电池的透明电极部分地被一片纳米线替代。 用于本发明的一种技术包括形成太阳能电池,其具有:a)比通常具有较薄厚度的导电材料的透明顶部电极薄,b)与顶部电极接触和/或涂覆的纳米线的互连网络 。 在一些实施例中,纳米线的顶部电极和网络与其它相同的电池相比,增加了太阳能电池的总功率输出,该电池仅使用a)材料的顶部电极层,其厚度和光透射率等于组合的厚度和光透射率 的顶部电极和纳米线网络,或b)互连的纳米线网络,其厚度等于组合的厚度和光透射率。
    • 6. 发明申请
    • IMPROVED ANTI-REFLECTIVE COATING
    • 改进的抗反射涂层
    • WO2009062140A3
    • 2009-08-13
    • PCT/US2008082960
    • 2008-11-10
    • SAGER BRIAN MSHEATS JAMES R
    • SAGER BRIAN MSHEATS JAMES R
    • G02B1/11B29D11/00
    • B29D11/00865G02B1/113G02B2207/107
    • Methods and devices are provided for improved anti-reflective coatings. Non- vacuum deposition of transparent conductive electrodes in a roll-to-roll manufacturing environment is disclosed. In one embodiment of the present invention, a device is provided comprising a multi-layer anti-reflective coating formed over a substantially transparent substrate; wherein the multi-layer anti-reflective coating comprises of a plurality of nanostructured layers, wherein each of the layers has a tuned porosity and at least some of the nanostructured layers have different porosities to create a different index of refraction for those layers. In some embodiments, the absorber layer for use with this anti-reflective layer is a group IB-IIIA-VIA absorber layer.
    • 提供了用于改进的抗反射涂层的方法和装置。 公开了透明导电电极在卷对卷制造环境中的非真空沉积。 在本发明的一个实施例中,提供了一种装置,其包括在基本上透明的基底上形成的多层抗反射涂层; 其中所述多层抗反射涂层包含多个纳米结构化层,其中所述层中的每一个具有调整的孔隙率,并且所述纳米结构化层中的至少一些具有不同的孔隙度以为这些层产生不同的折射率。 在一些实施例中,与该抗反射层一起使用的吸收层是IB-IIIA-VIA族吸收层。