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Antirenective porous-silicon coatings for multicrystalline solar cells: the effects of chemical etching and rapid thermal processing

机译:用于多晶太阳能电池的抗腐蚀多孔硅涂层:化学蚀刻和快速热处理的影响

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In this paper, the emitter of multicrystalline silicon solar cells has been chemically etched in order to form porous silicon (PS) layers, usually known as stain-etched PS, to be used at the same time as a selective emitter and as an efficient antireflective layer. The optical behaviour of the solar cells in the 250850 nm wavelength range (5-1.45 eV range) was determined before and after PS formation, resulting in a notable reduction of reflectance after PS formation and a corresponding increase in cell efficiency. The different morphologies of the silicon emitter and metallic contacts, before and after PS formation, were analysed by scanning electron microscopy and atomic force microscopy. Furthermore, the electrical properties of both the emitter region and the contacts were investigated, as well as the most significant solar cell parameters before and after PS formation. Finally, the effect of rapid thermal processing in nitrogen and oxygen atmospheres on both the surface morphology and the optical behaviour of PS was studied.
机译:在本文中,对多晶硅太阳能电池的发射极进行了化学刻蚀,以形成多孔硅(PS)层,通常称为污点刻蚀PS,可同时用作选择性发射极和有效的抗反射剂层。在PS形成之前和之后确定250850 nm波长范围(5-1.45 eV范围)内太阳能电池的光学性能,从而在PS形成之后反射率显着降低,并相应提高电池效率。通过扫描电子显微镜和原子力显微镜分析了PS形成前后硅发射极和金属触点的不同形态。此外,研究了发射极区和触点的电学性质,以及PS形成前后的最重要的太阳能电池参数。最后,研究了在氮气和氧气气氛中快速热处理对PS的表面形态和光学行为的影响。

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