Nanoparticle (NP) arrays of noble metals strongly absorb light in the visible to infrared wavelengths through resonant interactions between the incident electromagnetic field and the metal’s free electron plasma. Such plasmonic interfaces enhance light absorption and photocurrent in solar cells. We report a cost-effective and scalable room temperature/pressure spin-coating route to fabricate broadband plasmonic interfaces consisting of silver NPs. The NP interface yields photocurrent enhancement (PE) in thin film silicon devices by up to 200% which is significantly greater than previously reported values. For coatings produced from Ag nanoink containing particles with average diameter of 40 nm, an optimal NP surface coverage ϕ of 7% is ob...
The decoration of metal nanoparticles (MNPs) by the self-organized mechanism of dewetting is utilize...
The controlled use of surface plasmon resonances in metallic nanostructures has attracted considerab...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Renewable energy sources are a vital topic to the future of growing industrialized nations. Solar ce...
Photovoltaics (PV) is fast emerging as an attractive renewable energy technology due to concerns of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
The photon management plays a crucial role in thin film single junction or tandem silicon solar cell...
© 2020 American Chemical Society. All rights reserved.Plasmonic interfaces are used as an alternativ...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
The paper reports a development and implementation of light trapping based on light scattering from ...
Global warming is a potential threat to life on earth and to human society. It is by much evidence l...
Renewable energy sources are a vital topic to the future of growing industrialized nations. Solar ce...
A systematic investigation of the nanoparticle-enhanced light trapping in thin-film silicon solar ce...
Strong electromagnetic field enhancement that occurs under conditions of the surface plasmon excitat...
Recently plasmonic effects have gained tremendous interest in solar cell research because they are d...
The decoration of metal nanoparticles (MNPs) by the self-organized mechanism of dewetting is utilize...
The controlled use of surface plasmon resonances in metallic nanostructures has attracted considerab...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Renewable energy sources are a vital topic to the future of growing industrialized nations. Solar ce...
Photovoltaics (PV) is fast emerging as an attractive renewable energy technology due to concerns of ...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
The photon management plays a crucial role in thin film single junction or tandem silicon solar cell...
© 2020 American Chemical Society. All rights reserved.Plasmonic interfaces are used as an alternativ...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
The paper reports a development and implementation of light trapping based on light scattering from ...
Global warming is a potential threat to life on earth and to human society. It is by much evidence l...
Renewable energy sources are a vital topic to the future of growing industrialized nations. Solar ce...
A systematic investigation of the nanoparticle-enhanced light trapping in thin-film silicon solar ce...
Strong electromagnetic field enhancement that occurs under conditions of the surface plasmon excitat...
Recently plasmonic effects have gained tremendous interest in solar cell research because they are d...
The decoration of metal nanoparticles (MNPs) by the self-organized mechanism of dewetting is utilize...
The controlled use of surface plasmon resonances in metallic nanostructures has attracted considerab...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...