Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared to planar devices, but have exhibited low efficiency of light absorption and carrier collection. We fabricated a variety of millimeter-sized arrays of p-i-n doped InP nanowires and found that the nanowire diameter and the length of the top n-segment were critical for cell performance. Efficiencies up to 13.8% (comparable to the record planar InP cell) were achieved using resonant light trapping in 180-nanometer-diameter nanowires that only covered 12% of the surface. The share of sunlight converted into photocurrent (71%) was six times the limit in a simple ray optics description. Furthermore, the highest open circuit voltage of 0.906 volt exceeds th...
III−V solar cells in the nanowire geometry mighth old significant synthesis-cost and device-design a...
Space power systems require photovoltaics that are lightweight, efficient, reliable, and capable of ...
Vertical arrays of direct band gap III-V semiconductor nanowires (NWs) hold the prospect of cheap an...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared with pla...
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...
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...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Nanowire solar cells have the potential to reach the same efficiencies as the world-record III-V sol...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
An understanding of the absorption of light is essential for efficient photovoltaic and photodetecti...
III-V solar cells in the nanowire geometry might hold significant synthesis-cost and device-design a...
III−V solar cells in the nanowire geometry mighth old significant synthesis-cost and device-design a...
Space power systems require photovoltaics that are lightweight, efficient, reliable, and capable of ...
Vertical arrays of direct band gap III-V semiconductor nanowires (NWs) hold the prospect of cheap an...
Photovoltaics based on nanowire arrays could reduce cost and materials consumption compared with pla...
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...
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...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Nanowire solar cells have the potential to reach the same efficiencies as the world-record III-V sol...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
An understanding of the absorption of light is essential for efficient photovoltaic and photodetecti...
III-V solar cells in the nanowire geometry might hold significant synthesis-cost and device-design a...
III−V solar cells in the nanowire geometry mighth old significant synthesis-cost and device-design a...
Space power systems require photovoltaics that are lightweight, efficient, reliable, and capable of ...
Vertical arrays of direct band gap III-V semiconductor nanowires (NWs) hold the prospect of cheap an...