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首页> 外文期刊>Scientific reports. >Internal luminescence efficiencies in InGaP/GaAs/Ge triple-junction solar cells evaluated from photoluminescence through optical coupling between subcells
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Internal luminescence efficiencies in InGaP/GaAs/Ge triple-junction solar cells evaluated from photoluminescence through optical coupling between subcells

机译:通过在子单元之间的光学耦合评估的InGaP / GaAs / Ge三射线太阳能电池中的内部发光效率

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In-situ characterization is one of the most powerful techniques to improve material quality and device performance. Especially in view of highly efficient tandem solar cells this is an important issue for improving the cost-performance ratio. Optical techniques are suitable characterization methods, since they are non-destructing and contactless. In this work, we measured the power dependence of photoluminescence (PL) from the InGaP and GaAs subcells of an industry-standard triple-junction solar cell. High luminescence yields enhance the luminescence coupling, which was directly verified by time-resolved PL measurements. We present a new method to determine the internal luminescence efficiencies of InGaP and GaAs subcells with the aid of luminescence coupling. High luminescence efficiencies of 90% for GaAs and more than 20% for InGaP were found, which suggest that the material quality of the grown GaAs layer is excellent while the intrinsic luminescence limit of InGaP is still not reached even for high excitation conditions. The PL method is useful for probing the intrinsic material properties of the subcells in flat band condition, without influence of transport. Since no calibration of absolute PL is required, a fast screening of the material quality is possible, which should be extremely helpful for the solar cell industry.
机译:原位特征是提高材料质量和设备性能最强大的技术之一。特别是考虑到高效的串联太阳能电池,这是提高成本绩效比率的重要问题。光学技术是合适的表征方法,因为它们是非破坏性和非接触的。在这项工作中,我们测量了来自行业标准三界太阳能电池的InGaP和GaAS子单元的光致发光(PL)的功率依赖性。高发光产生增强发光耦合,通过时间分辨的PL测量直接验证。我们借助发光耦合确定了一种新方法来确定InGaP和GaAs子单元的内部发光效率。找到高90%的高发光效率和超过20%的Ingap,这表明生长的GaAs层的材料质量均匀,而InGap的内在发光极限仍然仍未达到高励磁条件。 PL方法可用于探测扁平带状条件的子单元的固有材料特性,而不会影响运输。由于不需要绝对PL的校准,因此可以快速筛选材料质量,这对于太阳能电池行业来说应该是非常有帮助的。

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