基于最佳光捕获和表面复合减少的纳米孔表面结构和TiO2钝化层的薄膜硅太阳电池性能增强

W. Ho, Po-Hung Tsai, Chia-Min Chang, Hong-Jhang Syu, Ching-Fuh Lin
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引用次数: 0

摘要

通过优化金属辅助化学蚀刻(MACE)和TiO2钝化,证明了一种基于光捕获增强和表面复合减少的薄膜硅太阳能电池的光伏性能。利用纳米银作为蚀刻掩膜,在MACE工艺中获得纳米多孔硅表面层。测量并比较了光反射率、暗电压和光伏电流电压、外量子效率随MACE次数的变化规律。当MACE时间为10秒,TiO2钝化厚度为15 nm时,电池效率显著提高38%。
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Performance enhancement of thin-film silicon solar cells with nanoporous surface structure and TiO2 passivation layer based on optimal light trapping and surface recombination reducing
Photovoltaic performance of a thin-film silicon solar cell based on light-trapping enhanced and surface-recombination reduced using an optimization of metal-assisted chemical etching (MACE) and TiO2 passivation was demonstrated. The silver nanoparticles were used as etched mask in MACE process to obtain a nanoporous silicon surface layer. The optical reflectance, dark and photovoltaic current-voltage, external quantum efficiency as a function of the MACE times are measured and compared. Significant improving efficiency of 38% was obtained for the cell with 10-second MACE time and 15-nm-thick TiO2 passivation.
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