Significant photocurrent enhancement has been achieved for evaporated solid-phase-crystallized polycrystalline silicon thin-film solar cells on glass, due to light trapping provided by Ag nanoparticles located on the rear silicon surface of the cells. This configuration takes advantage of the high scattering cross-section and coupling efficiency of rear-located particles formed directly on the optically dense silicon layer. We report short-circuit current enhancement of 29% due to Ag nanoparticles, increasing to 38% when combined with a detached back surface reflector. Compared to conventional light trapping schemes for these cells, this method achieves 1/3 higher short-circuit current
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Photovoltaics (PV) is fast emerging as an attractive renewable energy technology due to concerns of ...
Significant photocurrent enhancement has been achieved for evaporated solid-phase-crystallized polyc...
The paper reports a development and implementation of light trapping based on light scattering from ...
We demonstrate enhancements in photocurrent and conversion efficiency for thin-film Si cells on glas...
A systematic investigation of the nanoparticle-enhanced light trapping in thin-film silicon solar ce...
Ag nanoparticle arrays, located on the front or rear surface of a Si solar cell, can provide effecti...
We present experimental results for photocurrent enhancements in thin c-Si solar cells due to light-...
Photocurrent enhancement in thin a-Si:H solar cells due to the plasmonic light trapping is investiga...
We study Ag nanoparticles on thin-film Si solar cells using reflection and photocurrent mapping. We ...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Plasmonic thin film solar cells (modified with metallic nanostructures) often display enhanced light...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Photovoltaics (PV) is fast emerging as an attractive renewable energy technology due to concerns of ...
Significant photocurrent enhancement has been achieved for evaporated solid-phase-crystallized polyc...
The paper reports a development and implementation of light trapping based on light scattering from ...
We demonstrate enhancements in photocurrent and conversion efficiency for thin-film Si cells on glas...
A systematic investigation of the nanoparticle-enhanced light trapping in thin-film silicon solar ce...
Ag nanoparticle arrays, located on the front or rear surface of a Si solar cell, can provide effecti...
We present experimental results for photocurrent enhancements in thin c-Si solar cells due to light-...
Photocurrent enhancement in thin a-Si:H solar cells due to the plasmonic light trapping is investiga...
We study Ag nanoparticles on thin-film Si solar cells using reflection and photocurrent mapping. We ...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Plasmonic thin film solar cells (modified with metallic nanostructures) often display enhanced light...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
ABSTRACT: Advanced light management in thin-film solar cells is becoming increasingly important to r...
Photovoltaics (PV) is fast emerging as an attractive renewable energy technology due to concerns of ...