Exceptionally omnidirectional broadband light harvesting scheme for multi-junction concentrator solar cells achieved via ZnO nanoneedles

被引:0
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作者
Li-Ko Yeh
Wei-Cheng Tian
Kun-Yu Lai
Jr-Hau He
机构
[1] Computer,Electrical and Mathematical Sciences and Engineering (CEMSE) Division
[2] King Abdullah University of Science & Technology (KAUST),Department of Optics and Photonics
[3] Graduate Institute of Electronics Engineering,undefined
[4] National Taiwan University,undefined
[5] National Central University,undefined
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Scientific Reports | / 6卷
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摘要
GaInP/GaAs/Ge triple-junction concentrator solar cells with significant efficiency enhancement were demonstrated with antireflective ZnO nanoneedles. The novel nanostructure was attained with a Zn(NO3)2-based solution containing vitamin C. Under one sun AM 1.5G solar spectrum, conversion efficiency of the triple-junction device was improved by 23.7% via broadband improvement in short-circuit currents of 3 sub-cells after the coverage by the nanoneedles with a graded refractive index profile. The efficiency enhancement further went up to 45.8% at 100 suns. The performance boost through the nanoneedles also became increasingly pronounced in the conditions of high incident angles and the cloudy weather, e.g. 220.0% of efficiency enhancement was observed at the incident angle of 60°. These results were attributed to the exceptional broadband omnidirectionality of the antireflective nanoneedles.
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