Broadband down-conversion for silicon solar cell by ZnSe/phosphor heterostructure

Down-conversion is a feasible way to improve conversion efficiency of silicon solar cell. However, the width of excitation band for down-converter based on trivalent lanthanide ions is still not satisfying. Here, we designed and fabricated a heterostructural down-converter composed of Y₂O₃: [(Tb³⁺-Y...

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Veröffentlicht in:Optics express 2014-05, Vol.22 Suppl 3 (S3), p.A735-A741
Hauptverfasser: Wu, Xiaojie, Meng, Fanzhi, Zhang, Zhenzhong, Yu, Yingning, Liu, Xiaojuan, Meng, Jian
Format: Artikel
Sprache:eng
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Zusammenfassung:Down-conversion is a feasible way to improve conversion efficiency of silicon solar cell. However, the width of excitation band for down-converter based on trivalent lanthanide ions is still not satisfying. Here, we designed and fabricated a heterostructural down-converter composed of Y₂O₃: [(Tb³⁺-Yb³⁺), Li⁺] quantum cutting phosphor and ZnSe. The ZnSe phase was used to absorb the incident light with energy larger than its bandgap, and transfer the energy to Tb³⁺-Yb³⁺ quantum cutting couple. Short-wavelength incident light was finally converted into a strong Yb³⁺ emission at about 1000 nm, locating at the maximal spectral response of silicon solar cell. The excitation band of the down-conversion covers a wide region of 250-550 nm. Benefiting from the energy match between ZnSe bandgap and ⁷F₆→⁵D₄ absorption of Tb³⁺ ions, the bandwidth of down-conversion is almost maximized.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.22.00A735