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Characterization of multi-junction solar cells by mapping of the carrier transport efficiency using luminescence emission

机译:通过使用发光发射映射载流子传输效率来表征多结太阳能电池

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Multijunction solar cells are currently the devices offering the largest conversion efficiencies of the solar radiation, which could be further increased by limiting their series resistances. A clear evaluation of the impact of those resistances is therefore required, and provided in this paper by introducing a mapping method of the current transport efficiency from luminescence images. This method brings finer information on the cell than electroluminescence methods, widely used so far for multi-junction cells, and offers much faster acquisition time than what could be obtained with a light beam induced current setup. While it has been theoretically and experimentally developed for single junction solar cells, its application to multijunction cells remains to be demonstrated. The purpose of this communication is to assess its validity and to explain some results that can be counterintuitive at a first sight. Two different triple-junction architectures are investigated and successfully compared with electrical measurements and calculations.
机译:当前,多结太阳能电池是提供太阳辐射最大转换效率的设备,可以通过限制其串联电阻来进一步提高多转换太阳能电池的效率。因此,需要对这些电阻的影响进行清晰的评估,并在本文中通过介绍发光图像中电流传输效率的映射方法来提供。这种方法比电致发光方法在电池上能提供更好的信息,电致发光方法到目前为止已广泛用于多结电池,并且比光束感应电流设置所能获得的捕获时间快得多。尽管已经在理论上和实验上为单结太阳能电池开发了它,但其在多结电池上的应用仍有待证明。这种交流的目的是评估其有效性并解释一些乍一看可能违反直觉的结果。研究了两种不同的三结架构,并将其与电气测量和计算成功地进行了比较。

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