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    • 3. 发明授权
    • Electrical and opto-electrical characterization of large-area semiconductor devices
    • 大面积半导体器件的电气和光电特性
    • US09245810B2
    • 2016-01-26
    • US13266948
    • 2010-04-27
    • Phillip DaleSusanne Siebentritt
    • Phillip DaleSusanne Siebentritt
    • G01R31/02H01L21/66
    • H01L22/14
    • The present invention relates to an electrical and/or opto-electrical characterisation method for testing large-area semiconductor devices in production, the method comprising the steps of providing a first electrode and placing it into electrical contact with a contact area of a conducting layer of a semiconductor device; providing a movable electrode assembly, comprising a container holding an electrolyte solution and at least a second electrode; immersing the second electrode into the electrolyte solution; positioning the electrode assembly such that the electrolyte solution places the second electrode into electrical contact with a top surface of the semiconductor device; and scanning the movable electrode assembly relative to the top surface of the semiconductor device while performing electrical measurements. It also relates to a corresponding electrical and/or opto-electrical characterisation device comprising a first electrode, a movable electrode assembly with a container holding an electrolyte solution and a second electrode immersed into it and scanning means.
    • 本发明涉及一种用于在生产中测试大面积半导体器件的电和/或光电表征方法,该方法包括以下步骤:提供第一电极并将其放置成与导电层的导电层的接触区域 半导体器件; 提供可移动电极组件,包括容纳电解质溶液的容器和至少第二电极; 将第二电极浸入电解液中; 定位电极组件使得电解质溶液使第二电极与半导体器件的顶表面电接触; 以及在执行电测量时相对于半导体器件的顶表面扫描可动电极组件。 它还涉及相应的电和/或光电表征装置,其包括第一电极,具有容纳电解质溶液的容器的可动电极组件和浸入其中的第二电极和扫描装置。
    • 5. 发明申请
    • SOLAR CELL, AND PROCESS FOR PRODUCING SOLAR CELL
    • 太阳能电池和生产太阳能电池的方法
    • US20140020738A1
    • 2014-01-23
    • US14008821
    • 2012-03-28
    • Yasuhiro AidaValerie DepredurandSusanne Siebentritt
    • Yasuhiro AidaValerie DepredurandSusanne Siebentritt
    • H01L31/032
    • H01L31/0322H01L31/0749Y02E10/541Y02P70/521
    • A solar cell that can increase open-circuit voltage compared to the conventional solar cell, and as a result, can increase conversion efficiency. The solar cell includes a first absorber layer and a second absorber layer, wherein the first absorber layer is a p-type semiconductor layer containing a Ib group element, a IIIb group element, and a VIb group element and including a peak of luminescence whose half width is not less than 1 meV and not more than 15 meV in a photoluminescence spectrum or a cathodoluminescence spectrum; and the second absorber layer contains a Ib group element, a IIIb group element, and a VIb group element, the composition ratio of the Ib group element to the IIIb group element is not less than 0.1 and less than 1.0, and the second absorber layer is provided on the side of the light entering surface of the first absorber layer.
    • 与常规太阳能电池相比,可以增加开路电压的太阳能电池,结果可以提高转换效率。 太阳能电池包括第一吸收层和第二吸收层,其中第一吸收层是包含Ib族元素,IIIb族元素和VIb族元素的p型半导体层,并且包括其半数的发光峰 在光致发光光谱或阴极发光光谱中宽度不小于1meV且不大于15meV; 第二吸收体层含有Ib族元素,IIIb族元素和VIb族元素,Ib族元素与IIIb族元素的组成比为0.1以上且小于1.0,第二吸收体层 设置在第一吸收体层的光入射面的一侧。