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Towards an optimized all lattice-matched InAlAs/InGaAsP/InGaAs multijunction solar cell with efficiency >50

机译:朝着效率> 50%的优化的全晶格匹配InAlAs / InGaAsP / InGaAs多结太阳能电池迈进

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摘要

An approach for an all lattice-matched multijunction solar cell optimized design is presented with 5.807 Å lattice constant, together with a detailed analysis of its performance by means of full device modeling. The simulations show that a (1.93 eV)In_(0.37)Al_(0.63)As/(1.39 eV)In_(0.38)Ga_(0.62)As_(0.57)P_(0.43)/(0.94 eV)In_(0.38)Ga_(0.62)As 3-junction solar cell can achieve efficiencies >51% under 100-suns illumination (with V_(oc) = 3.34 V). As a key proof of concept, an equivalent 3-junction solar cell lattice-matched to InP was fabricated and tested. The independently connected single junction solar cells were also tested in a spectrum splitting configuration, showing similar performance to a monolithic tandem device, with V_(oc) = 1.8 V.
机译:提出了一种全晶格匹配的多结太阳能电池优化设计方法,其晶格常数为5.807?Å,并通过完整的器件建模对其性能进行了详细分析。仿真显示(1.93 eV)In_(0.37)Al_(0.63)As /(1.39 eV)In_(0.38)Ga_(0.62)As_(0.57)P_(0.43)/(0.94 eV)In_(0.38)Ga_( 0.62)因为三结太阳能电池在100太阳照射下(V_(oc)= 3.34 V)可以达到> 51%的效率。作为概念的关键证明,制造并测试了与InP晶格匹配的等效3结太阳能电池。还对独立连接的单结太阳能电池进行了频谱分割配置测试,显示出与单片串联设备相似的性能,V_(oc)= 1.8V。

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