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Tuning the peak position of subwavelength silica nanosphere broadband antireflection coatings
Authors:Fei Tao  Pritesh Hiralal  Lianbing Ren  Yong Wang  Qing Dai  Gehan AJ Amaratunga  Hang Zhou
Abstract:Subwavelength nanostructures are considered as promising building blocks for antireflection and light trapping applications. In this study, we demonstrate excellent broadband antireflection effect from thin films of monolayer silica nanospheres with a diameter of 100 nm prepared by Langmuir-Blodgett method on glass substrates. With a single layer of compact silica nanosphere thin film coated on both sides of a glass, we achieved maximum transmittance of 99% at 560 nm. Furthermore, the optical transmission peak of the nanosphere thin films can be tuned over the UV-visible range by changing processing parameters during Langmuir-Blodgett deposition. The tunable optical transmission peaks of the Langmuir-Blodgett films were correlated with deposition parameters such as surface pressure, surfactant concentration, ageing of suspensions and annealing effect. Such peak-tunable broadband antireflection coating has wide applications in diversified industries such as solar cells, windows, displays and lenses.
Keywords:Peak tunable   Antireflection   Light trapping   Spheres   Langmuir-Blodgett   Solar cells
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