Photovoltaic cells based on arrays of semiconductor nanowires promise efficiencies comparable or even better than their planar counterparts with much less material. One reason for the high efficiencies is their large absorption cross section, but until recently the photocurrent has been limited to less than 70% of the theoretical maximum. Here we enhance the absorption in indium phosphide (InP) nanowire solar cells by employing broadband forward scattering of self-aligned nanoparticles on top of the transparent top contact layer. This results in a nanowire solar cell with a photovoltaic conversion efficiency of 17.8% and a short-circuit current of 29.3 mA/cm2 under 1 sun illumination, which is the highest reported so far for nanowire solar ...
The use of nanowires is intriguing because of the possibilities to improve photovoltaic performances...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Photovoltaic cells based on arrays of semiconductor nanowires promise efficiencies comparable or eve...
Photovoltaic cells based on arrays of semiconductor nanowires promise efficiencies comparable or eve...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared to plana...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared with pla...
We experimentally investigate the optical properties of layers of InP, Si, and GaP nanowires, releva...
Abstract Solar cells based on subwavelength-dimensions semiconductor nanowire (NW) arrays promise a ...
Solar cells based on subwavelength-dimensions semiconductor nanowire (NW) arrays promise a comparabl...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
A near-unity unselective absorption spectrum is desirable for high-performance photovoltaics. Nanowi...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
The use of nanowires is intriguing because of the possibilities to improve photovoltaic performances...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Photovoltaic cells based on arrays of semiconductor nanowires promise efficiencies comparable or eve...
Photovoltaic cells based on arrays of semiconductor nanowires promise efficiencies comparable or eve...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared to plana...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared with pla...
We experimentally investigate the optical properties of layers of InP, Si, and GaP nanowires, releva...
Abstract Solar cells based on subwavelength-dimensions semiconductor nanowire (NW) arrays promise a ...
Solar cells based on subwavelength-dimensions semiconductor nanowire (NW) arrays promise a comparabl...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
A near-unity unselective absorption spectrum is desirable for high-performance photovoltaics. Nanowi...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
The use of nanowires is intriguing because of the possibilities to improve photovoltaic performances...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...