A lossless solar cell operating at the Shockley–Queisser limit generates an open circuit voltage (Voc) equal to the radiative limit. At Voc, the highly directional beam of photons from the sun is absorbed and subsequently externally re-emitted into a 4π solid angle, providing a large photon entropy loss. A solar cell can beat the Shockley–Queisser limit and approach the 46.7% ultimate limit by decreasing the output solid angle of the light emission at open circuit conditions. Here, a design for an indium phosphide single nanowire solar cell capable to operate 159 mV above the radiative limit is presented. The spontaneous emission factor is first optimized into a guided mode of the nanowire toward 68%. The authors subsequently launch a guide...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
A nanowire solar cell can fundamentally outperform its planar counterpart due to efficient light out...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
A lossless solar cell operating at the Shockley–Queisser limit generates an open circuit voltage (Vo...
A lossless solar cell operating at the Shockley-Queisser limit generates an open circuit voltage (Vo...
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...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
Thermodynamics shows that the open-circuit voltage ( V o c ) of a solar cell is dependent on the ext...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
A nanowire solar cell can fundamentally outperform its planar counterpart due to efficient light out...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...
A lossless solar cell operating at the Shockley–Queisser limit generates an open circuit voltage (Vo...
A lossless solar cell operating at the Shockley-Queisser limit generates an open circuit voltage (Vo...
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...
A lossless solar cell operating at the Shockley-Queisser (S-Q) limit generates an open-circuit volta...
Our previously reported 17.8 % efficiency InP nanowire solar cell1 showed a short-circuit current Is...
Thermodynamics shows that the open-circuit voltage ( V o c ) of a solar cell is dependent on the ext...
III-V semiconductor nanowire arrays show promise as a platform for next-generation solar cells. Howe...
A nanowire solar cell can fundamentally outperform its planar counterpart due to efficient light out...
Light management is of great importance in photovoltaic cells, as it determines the fraction of inci...