Advanced light-trapping effect of thin-film solar cell with dual photonic crystals

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Abstract

A thin-film solar cell with dual photonic crystals has been proposed, which shows an advanced light-trapping effect and superior performance in ultimate conversion efficiency (UCE). The shapes of nanocones have been optimized and discussed in detail by self-definition. The optimized shape of nanocone arrays (NCs) is a parabolic shape with a nearly linearly graded refractive index (GRI) profile from the air to Si, and the corresponding UCE is 30.3% for the NCs with a period of 300 nm and a thickness of only 2 μm. The top NCs and bottom NCs of the thin film have been simulated respectively to investigate their optimized shapes, and their separate contributions to the light harvest have also been discussed fully. The height of the top NCs and bottom NCs will also influence the performances of the thin-film solar cell greatly, and the result indicates that the unconformal NCs have better light-trapping ability with an optimal UCE of 32.3% than the conformal NCs with an optimal UCE of 30.3%.

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Zhang, A., Guo, Z., Tao, Y., Wang, W., Mao, X., Fan, G., … Qu, S. (2015). Advanced light-trapping effect of thin-film solar cell with dual photonic crystals. Nanoscale Research Letters, 10(1). https://doi.org/10.1186/s11671-015-0912-5

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