Light trapping mechanism in one-dimensional (1D) photonic crystals for silicon-based solar cells

2012 ◽  
Vol 27 (3) ◽  
pp. 309-317 ◽  
Author(s):  
R.S. Dubey ◽  
P.L. Sarojini
2011 ◽  
Vol 110-116 ◽  
pp. 497-502
Author(s):  
Wei Ping Chu ◽  
Fuh Shyang Juang ◽  
Jian Shian Lin ◽  
Tien Chai Lin ◽  
Chen Wei Kuo

We utilize photonic crystals to enhanced lighttrapping in a-Si:H thin film solar cells. The photonic crystals effectively increase Haze ratio of glass and decrease reflectance of a-Si:H solar cells. Therefore, increase the photon path length to obtain maximum absorption of the absorber layer. The photonic crystals can effective in harvesting weakly absorbing photons with energies just above the band edge. We were spin coated UV glue on the glass, and then nanoimprint of photonic crystals pattern. Finally, used UV lamp was curing of UV glue on the glass. When the 45∘composite photonic crystals structures, the haze was increase to 87.9 %, resulting the short circuit current density and efficiency increasing to 13.96 mA/cm2 and 7.39 %, respectively. Because 45∘composite photonic crystals easy to focus on the point of light lead to the effect of scattering can’t achieve. So, we designs 90∘V-shaped photonic crystals structures to increase scattering. When the 90∘V-shaped photonic crystals structures, the Haze was increase to 93.9 %. Therefore, the short circuit current density and Efficiency increasing to 15.62 mA/cm2 and 8.09 %, respectively. We observed ~35 % enhancement of the short-circuit current density and ~31 % enhancement of the conversion efficiency.


Author(s):  
D. Duche ◽  
JJ. Simon ◽  
L. Escoubas ◽  
Ph. Torchio ◽  
J. Le Rouzo ◽  
...  

2020 ◽  
Vol 50 (3) ◽  
Author(s):  
Junfei Fang ◽  
Yuchun Gou ◽  
Jianping Deng

The research of the optimal surface structure has attracted considerable interest because of its potential application in light trapping in thin-film solar cells (TFSCs). In this paper, a super-fine structure named complex trapezoid grating is proposed to improve the optical absorption comparing to the conventional simple trapezoid grating in a-Si:H TFSCs. The numerical calculation by utilizing rigorous coupled-wave analysis (RCWA) is conducted to obtain the optical absorption of the structured surface. The results demonstrate that, compared to a planar slab, the optimized-simple trapezoid grating shows 97% enhancement of power conversion efficiency η while the complex trapezoid grating shows 131% enhancement. Obviously, the complex trapezoid grating exhibits a better performance than the simple grating, which is due to the perfect antireflective effect and microcavity resonance effect. The angular response of the optical absorption in a-Si:H TFSCs was also investigated. The results further indicate that it is a better way to select the complex trapezoid grating in improving the optical absorption of silicon-based TFSCs.


Nano-Optics ◽  
2020 ◽  
pp. 337-345
Author(s):  
Sithara P. Sreenilayam ◽  
Éanna McCarthy ◽  
Karsten Fleischer ◽  
Stephen Goodnick ◽  
Stuart Bowden ◽  
...  

2014 ◽  
Vol 22 (S5) ◽  
pp. A1229 ◽  
Author(s):  
Léo Peres ◽  
Valérie Vigneras ◽  
Sophie Fasquel

Author(s):  
Lu Hu ◽  
Xiaoyuan Chen ◽  
Gang Chen

One key challenge for silicon-based solar cells is the weak absorption of long-wavelength photons near the bandgap (1.1eV) due to the indirect bandgap of silicon. A large fraction of the AM 1.5 solar spectrum falls into a regime (0.7 μm – 1.1 μm) where silicon does not absorb light well. The capture of these long-wavelength photons imposes a particular problem to the thin-film silicon solar cells. For this reason, thin-film silicon solar cells often incorporate some forms of light trapping mechanisms.


RSC Advances ◽  
2015 ◽  
Vol 5 (67) ◽  
pp. 54638-54644 ◽  
Author(s):  
Wenjuan Yu ◽  
Liang Shen ◽  
Xu Jia ◽  
Yan Liu ◽  
Wenbin Guo ◽  
...  

Improved CRI and PCE were achieved by introducing 1DPCs as a wavelength-dependent filter on top of semi-transparent polymer solar cells.


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