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EXPERIMENTAL ANALYSIS OF THE EFFICIENCY OF HETEROSTRUCTURE GAAS-ALGAAS SOLAR CELLS

机译:异构GAAS-ALGAAS太阳能电池效率的实验分析

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Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain high efficiencies. Based on the simple Shockley diode model, the short-circuit current could be increased without loss in the open-circuit voltage. Applying the Detailed Balance Theory, including radiative recombination in the i-region, leads to less optimistic predictions of the limiting efficiency of MQW cells. We present an experimental study in order to compare the efficiency of MQW solar cells with heterostructure cells with graded Al compositions and single bandgap solar cells. Compared to the homojunction AlGaAs cell, an increase of the short-circuit current is observed by the incorporation of GaAs in the i-region. However, the open-circuit voltage is reduced by the implementation of GaAs, due to an increase of the non-radiative recombination current. To estimate the maximum possible open-circuit voltage, the radiative recombination current is determined by measuring the light emission as a function of the applied voltage. From this experiment we conclude that the maximum possible open-circuit voltage of all the heterostructure cells is considerably lower than the homogeneous AlGaAs cell and close to the value of the GaAs cell, showing the relation between the open-circuit voltage and the smallest bandgap in the cell. The measured curves can be well predicted by calculations based on the Detailed Balance Theory. We find no principal advantage of MQW cells over cells with graded composition or single bandgap cells. [References: 14]
机译:几年前,引入多量子阱(MQW)太阳能电池作为获得高效率的替代方法。基于简单的肖克利二极管模型,可以增加短路电流而不会损失开路电压。应用详细平衡理论(包括i区域中的辐射复合)导致对MQW电池的极限效率的乐观预测减少。我们目前进行一项实验研究,以比较MQW太阳能电池与具有渐变Al组成的异质结构电池和单带隙太阳能电池的效率。与同质结AlGaAs电池相比,通过在i区域掺入GaAs可以观察到短路电流的增加。然而,由于非辐射复合电流的增加,通过实施GaAs可以降低开路电压。为了估算最大可能的开路电压,通过测量发光强度与施加电压的函数来确定辐射复合电流。从这个实验中我们得出结论,所有异质结构单元的最大可能开路电压明显低于均质的AlGaAs单元,并且接近GaAs单元的值,显示了开路电压与最小带隙之间的关系。细胞。通过基于详细平衡理论的计算可以很好地预测测量曲线。我们发现,MQW细胞与具有渐变成分的细胞或单个带隙细胞相比,没有任何主要优势。 [参考:14]

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