AbstractIn this work we present a novel tandem solar cell concept that is based on enhanced below band gap infrared absorption. The solar cell structure is based on silicon and infrared activated Black Silicon. Infrared active Black Silicon is produced by exposing silicon to fs-laser pulses. It features an enhanced IR absorption, when processed under a sulfur-containing atmosphere. Then sulfur is incorporated into the silicon lattice during laser processing providing energy states in the band gap. This silicon based tandem cell thus absorbs light with wavelengths beyond 1.1μm. This can potentially increase the overall efficiency. In this paper we present the first experimental realization of this concept. We use a standard aluminium-back-su...
Abstract Silicon is widely used in semiconductor industry but has poor performance in near-infrared ...
Black silicon (BSi) is a synthetic nanomaterial with high aspect ratio nano protrusions inducing sev...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...
AbstractIn this work we present a novel tandem solar cell concept that is based on enhanced below ba...
In this work we present a novel tandem solar cell concept that is based on enhanced below band gap i...
AbstractSamples of crystalline silicon for use as solar cell material are structured and hyperdoped ...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
In this paper, we investigate the absorption of mid-infrared light by low resistivity silicon textur...
Due to the localized surface plasmon (LSP) effect induced by Ag nanoparticles inside black silicon, ...
The Defence Advanced Research Project Agency (DARPA) of the United States of America sponsors a proj...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
Abstract Silicon is widely used in semiconductor industry but has poor performance in near-infrared ...
Black silicon (BSi) is a synthetic nanomaterial with high aspect ratio nano protrusions inducing sev...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...
AbstractIn this work we present a novel tandem solar cell concept that is based on enhanced below ba...
In this work we present a novel tandem solar cell concept that is based on enhanced below band gap i...
AbstractSamples of crystalline silicon for use as solar cell material are structured and hyperdoped ...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
We present a femtosecond laser pulse process that induces a texture-like surface structure on silico...
AbstractWe present a femtosecond laser pulse process that induces a texture-like surface structure o...
Irradiating a planar silicon surface with femtosecond laser pulses under a sulfuric atmosphere creat...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
In this paper, we investigate the absorption of mid-infrared light by low resistivity silicon textur...
Due to the localized surface plasmon (LSP) effect induced by Ag nanoparticles inside black silicon, ...
The Defence Advanced Research Project Agency (DARPA) of the United States of America sponsors a proj...
Samples of crystalline silicon for use as solar cell material are structured and hyperdoped with sul...
Abstract Silicon is widely used in semiconductor industry but has poor performance in near-infrared ...
Black silicon (BSi) is a synthetic nanomaterial with high aspect ratio nano protrusions inducing sev...
“Black silicon” is a novel type of material, which can absorb incident sun light by approximately 98...