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Thorough subcells diagnosis in a multi-junction solar cell via absolute electroluminescence-efficiency measurements.


ABSTRACT: World-wide studies on multi-junction (tandem) solar cells have led to record-breaking improvements in conversion efficiencies year after year. To obtain detailed and proper feedback for solar-cell design and fabrication, it is necessary to establish standard methods for diagnosing subcells in fabricated tandem devices. Here, we propose a potential standard method to quantify the detailed subcell properties of multi-junction solar cells based on absolute measurements of electroluminescence (EL) external quantum efficiency in addition to the conventional solar-cell external-quantum-efficiency measurements. We demonstrate that the absolute-EL-quantum-efficiency measurements provide I-V relations of individual subcells without the need for referencing measured I-V data, which is in stark contrast to previous works. Moreover, our measurements quantify the absolute rates of junction loss, non-radiative loss, radiative loss, and luminescence coupling in the subcells, which constitute the "balance sheets" of tandem solar cells.

SUBMITTER: Chen S 

PROVIDER: S-EPMC4296303 | biostudies-literature | 2015 Jan

REPOSITORIES: biostudies-literature

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Thorough subcells diagnosis in a multi-junction solar cell via absolute electroluminescence-efficiency measurements.

Chen Shaoqiang S   Zhu Lin L   Yoshita Masahiro M   Mochizuki Toshimitsu T   Kim Changsu C   Akiyama Hidefumi H   Imaizumi Mitsuru M   Kanemitsu Yoshihiko Y  

Scientific reports 20150116


World-wide studies on multi-junction (tandem) solar cells have led to record-breaking improvements in conversion efficiencies year after year. To obtain detailed and proper feedback for solar-cell design and fabrication, it is necessary to establish standard methods for diagnosing subcells in fabricated tandem devices. Here, we propose a potential standard method to quantify the detailed subcell properties of multi-junction solar cells based on absolute measurements of electroluminescence (EL) e  ...[more]

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