首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >PHOTOLUMINESCENCE-BASED CURRENT-VOLTAGE CHARACTERISATION OF INDIVIDUAL SUBCELLS IN MULTI-JUNCTION DEVICES
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PHOTOLUMINESCENCE-BASED CURRENT-VOLTAGE CHARACTERISATION OF INDIVIDUAL SUBCELLS IN MULTI-JUNCTION DEVICES

机译:基于光致发光的多结点装置中子电池的电流-电压特性

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We demonstrate a photoluminescence based, contactless method to determine the current-voltage characteristics of the individual subcells in a multi-junction solar cell. The method, furthers known results for single junction devices and relies upon the reciprocity relation between the absorption and emission properties on a solar cell. Laser light with a suitable energy is used to excite carriers selectively in one junction and the internal voltages are deduced from the intensity of the resulting luminescence. The IV curves obtained this way on 1J, 2J and 6J devices are compared to those obtained using electroluminescence. Good agreement is obtained at high injection conditions while discrepancies at low injection are attributed to in-plane carrier transport.
机译:我们演示了一种基于光致发光的非接触式方法来确定多结太阳能电池中各个子电池的电流-电压特性。该方法进一步提高了单结器件的已知结果,并依赖于太阳能电池吸收和发射特性之间的互易关系。具有适当能量的激光被用于选择性地激发一个结中的载流子,并且从产生的发光强度中推导出内部电压。将以这种方式在1J,2J和6J器件上获得的IV曲线与使用电致发光获得的IV曲线进行比较。在高注入条件下可以获得良好的一致性,而在低注入条件下的差异则归因于面内载流子传输。

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