Nanophotonic engineering shows great potential for photovoltaics: the record conversion efficiencies of nanowire solar cells are increasing rapidly1,2 and the record open-circuit voltages are becoming comparable to the records for planar equivalents3,4. Furthermore, it has been suggested that certain nanophotonic effects can reduce costs and increase efficiencies with respect to planar solar cells5,6. These effects are particularly pronounced in single-nanowire devices, where two out of the three dimensions are subwavelength. Singlenanowire devices thus provide an ideal platform to study how nanophotonics affects photovoltaics7–12. However, for these devices the standard definition of power conversion efficiency no longer applies, because t...
A lossless solar cell operating at the Shockley-Queisser limit generates an open circuit voltage (Vo...
III-V solar cells in the nanowire geometry might hold significant synthesis-cost and device-design a...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
Nanophotonic engineering shows great potential for photovoltaics: the record conversion efficiencies...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
Present day nanowire solar cells have reached an efficiency of 17.8%. Nanophotonic engineering by na...
Present day nanowire solar cells have reached an efficiency of 17.8%. Nanophotonic engineering by na...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
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...
A lossless solar cell operating at the Shockley-Queisser limit generates an open circuit voltage (Vo...
III-V solar cells in the nanowire geometry might hold significant synthesis-cost and device-design a...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
Nanophotonic engineering shows great potential for photovoltaics: the record conversion efficiencies...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
Present day nanowire solar cells have reached an efficiency of 17.8%. Nanophotonic engineering by na...
Present day nanowire solar cells have reached an efficiency of 17.8%. Nanophotonic engineering by na...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
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...
A lossless solar cell operating at the Shockley-Queisser limit generates an open circuit voltage (Vo...
III-V solar cells in the nanowire geometry might hold significant synthesis-cost and device-design a...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...