We demonstrate high-performance polymer solar cells using the plasmonic effect of multipositional silica-coated silver nanoparticles. The location of the nanoparticles is critical for increasing light absorption and scattering via enhanced electric field distribution. The device incorporating nanoparticles between the hole transport layer and the active layer achieves a power conversion efficiency of 8.92% with an external quantum efficiency of 81.5%. These device efficiencies are the highest values reported to date for plasmonic polymer solar cells using metal nanoparticles.close2
Experimental results concerning the influence of plasmon effect from silver nanoparticles on the org...
In this work we improved the performance of ITO-free polymer solar cells (PSCs) by incorporating sil...
We demonstrated plasmonic effects. in an inverted tandem polymer solar cell configuration by blendin...
We demonstrate high-performance polymer solar cells using the plasmonic effect of multipositional si...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
We present a simple and versatile technique to introduce plasmonic silver nanoparticles into organic...
In the present work we compare the performance of organic solar cells, based on the bulk heterojunct...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
In this paper, we demonstrate that the performance of the industrial multicrystalline silicon solar ...
We compare the performance of polymer solar cells based on poly(3-hexylthiophene) (P3HT) and [6,6]-p...
The use of dye-sensitized solar cells (DSSCs) is widespread owing to their high power conversion eff...
This article describes a cooperative plasmonic effect on improving the performance of polymer bulk h...
Embedding nanoparticles (NPs) in the buffer layer of bulk heterojunction polymer solar cells (BHJ PS...
The solution processable polymer solar cells have shown a great promise as a cost-effective photovol...
Experimental results concerning the influence of plasmon effect from silver nanoparticles on the org...
In this work we improved the performance of ITO-free polymer solar cells (PSCs) by incorporating sil...
We demonstrated plasmonic effects. in an inverted tandem polymer solar cell configuration by blendin...
We demonstrate high-performance polymer solar cells using the plasmonic effect of multipositional si...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
We present a simple and versatile technique to introduce plasmonic silver nanoparticles into organic...
In the present work we compare the performance of organic solar cells, based on the bulk heterojunct...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
In this paper, we demonstrate that the performance of the industrial multicrystalline silicon solar ...
We compare the performance of polymer solar cells based on poly(3-hexylthiophene) (P3HT) and [6,6]-p...
The use of dye-sensitized solar cells (DSSCs) is widespread owing to their high power conversion eff...
This article describes a cooperative plasmonic effect on improving the performance of polymer bulk h...
Embedding nanoparticles (NPs) in the buffer layer of bulk heterojunction polymer solar cells (BHJ PS...
The solution processable polymer solar cells have shown a great promise as a cost-effective photovol...
Experimental results concerning the influence of plasmon effect from silver nanoparticles on the org...
In this work we improved the performance of ITO-free polymer solar cells (PSCs) by incorporating sil...
We demonstrated plasmonic effects. in an inverted tandem polymer solar cell configuration by blendin...