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- W1485355556 abstract "Solar cells convert solar radiation into electrical energy and have the potential to replace current energy technologies based on fossil fuels. Novel materials are required to develop the next-generation of solar cells that need to operate at higher efficiencies, while manufactured at reduced cost. III–V compound semiconductors offer the chance to effectively absorb above-bandgap photons at a fraction of material volume utilized in silicon (Si) photovoltaics. In the realm of nanomaterials, III–V nanopillars are vertical nanostructures that could function as the building blocks of highly efficient solar cells. The solar photon absorption is greatly maximized in arrays of nanopillars due to waveguiding and optical resonant modes that are sustained within the structure. Such technology not only promises to enormously decrease the semiconductor usage in comparison with III–V (or Si) thin-film solar cells but also challenges conversion efficiencies in the current state of the art at a lesser dollar per watt." @default.
- W1485355556 created "2016-06-24" @default.
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- W1485355556 date "2015-04-20" @default.
- W1485355556 modified "2023-09-26" @default.
- W1485355556 title "Next‐Generation GA Photovoltaics" @default.
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