Title :
Efficiency enhancement of the thin-silicon photovoltaics using indium-tin-oxide nanowhiskers
Author :
Chang, Wei-Lun ; Liu, En-Ting ; Chang, Chia-Hua ; Yu, Peichen ; Wu, Chien-Hung
Author_Institution :
Green Energy & Environ. Res. Labs., Ind. Technol. Res. Inst., Hsinchu, Taiwan
Abstract :
Thin wafer-based solar cells have the potential to significantly decrease the cost of photovoltaics. Light trapping is particularly critical in such thin-wafer crystalline silicon solar cells in order to increase light absorption and hence cell efficiency. In this article we investigate the indium-tin-oxide nanowhisker on textured silicon surface for enhancing the near-infrared absorbance of silicon photovoltaics. The nanowhiskers facilitate optical transmission in the near-infrared by functioning as impedance matching layers with effective refractive indices gradually varying from 1 to 1.3. Materials with such unique refractive index characteristics are not readily available in nature. As a result, the solar cell with combined textures achieves quantum efficiencies enhancement for a broad wavelength range of 900 to 1100 nm, which is crucial to the development of advanced thin-substrate silicon solar cells.
Keywords :
indium compounds; light absorption; nanophotonics; nanostructured materials; radiation pressure; silicon; solar cells; efficiency enhancement; impedance matching layers; indium-tin-oxide nanowhiskers; light trapping; near-infrared absorbance; optical transmission; quantum efficiencies; refractive index characteristics; textured silicon surface; thin-silicon photovoltaics; thin-wafer crystalline silicon solar cells; Absorption; Indium tin oxide; Optical reflection; Optical surface waves; Photovoltaic cells; Silicon; Surface treatment;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2011 37th IEEE
Conference_Location :
Seattle, WA
Print_ISBN :
978-1-4244-9966-3
DOI :
10.1109/PVSC.2011.6186540