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Modeling lattice-matched InP-based multijunction solar cells

机译:建模晶格匹配的基于InP的多结太阳能电池

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摘要

Currently, the multijunction solar cell structure gives the highest efficiency for photovoltaic solar cells. In this study, tandem, triple, and quadruple junction multijunction solar cell structures that include an InP subcell on InP substrate were investigated. A model that can calculate both the voltage-current characteristics and external quantum efficiency was demonstrated. The model gave fitted results with the experimental data for a single junction GaAs solar cell and a tandem solar cell that provides efficiency higher than 30%. The model was used to optimize the lattice-matched AlAsSb/InP tandem, AlAsSb/InP/InGaAsP triple, and AlAsSb/InP/InGaAsP/GaAsSb quadruple junction solar cell designs and the highest efficiencies obtained for these cells were 29.9%, 36.69%, and 42.79%, respectively, under AM1.5 spectrum without any sun concentration. This lattice-matched quadruple junction structure gives the opportunity of having high efficiency without wafer bonding.
机译:当前,多结太阳能电池结构为光伏太阳能电池提供了最高的效率。在这项研究中,研究了在InP衬底上包括InP子电池的串联,三重和四重结多结太阳能电池结构。证明了可以同时计算电压-电流特性和外部量子效率的模型。该模型为单结GaAs太阳能电池和串联式太阳能电池(其效率高于30%)提供了符合实验结果的拟合结果。该模型用于优化晶格匹配的AlAsSb / InP串联,AlAsSb / InP / InGaAsP三重和AlAsSb / InP / InGaAsP / GaAsSb四结太阳能电池设计,这些电池获得的最高效率分别为29.9%,36.69%,在没有阳光集中的情况下,分别在AM1.5光谱下为42.79%。这种晶格匹配的四重结结构提供了在没有晶圆键合的情况下具有高效率的机会。

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