Publication | Open Access
Enhanced broadband and omni-directional performance of polycrystalline Si solar cells by using discrete multilayer antireflection coatings
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Citations
26
References
2012
Year
Enhanced BroadbandOptical MaterialsEngineeringOrganic Solar CellPhotovoltaic DevicesOptoelectronic DevicesPhotovoltaicsSolar Cell StructuresGenetic AlgorithmSolar CellsMaterials ScienceMaterials EngineeringElectrical EngineeringOmni-directional PerformanceAnti-reflective CoatingsMulti-functional CoatingDepth-graded Multilayer CoatingPerovskite Solar CellApplied PhysicsBuilding-integrated PhotovoltaicsProtective CoatingsThin FilmsOmni-directional CharacteristicsSolar Cell Materials
The performance enhancement of polycrystalline Si solar cells by using an optimized discrete multilayer anti-reflection (AR) coating with broadband and omni-directional characteristics is presented. Discrete multilayer AR coatings are optimized by a genetic algorithm, and experimentally demonstrated by refractive-index tunable SiO₂ nano-helix arrays and co-sputtered (SiO₂)x(TiO₂)₁₋x thin film layers. The optimized multilayer AR coating shows a reduced total reflection, leading to the high incident-photon-to-electron conversion efficiency over a correspondingly wide range of wavelengths and incident angles, offering a very promising way to harvest more solar energy by virtually any type of solar cells for a longer time of a day.
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