Publication | Closed Access
Efficiency enhancement in Si solar cells by textured photonic crystal back reflector
354
Citations
6
References
2006
Year
EngineeringOrganic Solar CellPlasmon-enhanced PhotovoltaicsPhotovoltaic SystemSilicon On InsulatorPhotovoltaicsPhotonic CrystalsPhotonic Integrated CircuitSi Solar CellsPhotonicsElectrical EngineeringEfficient Light-trapping SchemeSolar PowerPhotonic DeviceApplied PhysicsBuilding-integrated PhotovoltaicsEfficiency EnhancementSolar CellsOptoelectronicsTextured Photonic CrystalSolar Cell Materials
An efficient light-trapping scheme is developed for solar cells that can enhance the optical path length by several orders of magnitude using a textured photonic crystal as a backside reflector. It comprises a reflection grating etched on the backside of the substrate and a one-dimensional photonic crystal deposited on the grating. Top-contacted crystalline Si solar cells integrated with the textured photonic crystal back reflector were designed and fabricated. External quantum efficiency was significantly improved between the wavelengths of 1000 and 1200nm (enhancement up to 135 times), and the overall power conversion efficiency was considerably increased.
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