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Efficiently harvesting sun light for silicon solar cells through advanced optical couplers and a radial p-n junction structure
Journal article   Open access   Peer reviewed

Efficiently harvesting sun light for silicon solar cells through advanced optical couplers and a radial p-n junction structure

Hsin-Cheng Lee, Shich-Chuan Wu, Tien-Chung Yang and Ta-Jen Yen
Energies, Vol.3(4), pp.784-802
04/2010

Abstract

Particles plasmon Photonic crystals Photovoltaics Plasmonic structure Radial p-n junction Silicon nanowires Silicon solar cells Solar energy Surface plasmon Thin-film solar cells
Silicon-based solar cells (SCs) promise to be an alternative energy source mainly due to: (1) a high efficiency-to-cost ratio, (2) the absence of environmentaldegradation issues, and (3) great reliability. Transition from wafer-based to thin-film SC significantly reduces the cost of SCs, including the cost from the material itself and the fabrication process. However, as the thickness of the absorption (or the active) layer decreases, the energy-conversion efficiency drops dramatically. As a consequence, we discuss here three techniques to increase the efficiency of silicon-based SCs: (1) photonic crystal (PC) optical couplers and (2) plasmonic optical couplers to increase efficiency of light absorption in the SCs, and (3) a radial p-n junction structure, decomposing light absorption and diffusion path into two orthogonal directions. The detailed mechanisms and recent research progress regarding these techniques are discussed in this review article. © 2010 by the authors; licensee MDPI, Basel, Switzerland.
url
https://doi.org/10.3390/en3040784View
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