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- W2007117966 abstract "We present a finite-difference time-domain (FDTD) study of an amorphous silicon (a-Si) thin film solar cell, with nano scale patterns on the substrate surface. The patterns, based on the geometry of anisotropically etched silicon gratings, are optimized with respect to the period and anti-reflection (AR) coating thickness for maximal absorption in the range of the solar spectrum. The structure is shown to increase the cell efficiency by 10.2% compared to a similar flat solar cell with an optimized AR coating thickness. An increased back reflection can be obtained with a 50 nm zinc oxide layer on the back reflector, which gives an additional efficiency increase, leading to a total of 14.9%. In addition, the patterned cells are shown to be up to 3.8% more efficient than an optimized textured reference cell based on the Asahi U-type glass surface. The effects of variations of the optimized solar cell structure due to the manufacturing process are investigated, and shown to be negligible for variations below ±10%." @default.
- W2007117966 created "2016-06-24" @default.
- W2007117966 creator A5026344476 @default.
- W2007117966 creator A5083396698 @default.
- W2007117966 date "2013-01-14" @default.
- W2007117966 modified "2023-09-25" @default.
- W2007117966 title "Opimization of imprintable nanostructured a-Si solar cells: FDTD study" @default.
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- W2007117966 doi "https://doi.org/10.1364/oe.21.00a208" @default.
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