单晶硅
太阳能电池
材料科学
薄脆饼
光电子学
硅
氮化硅
量子效率
共发射极
光学
晶体硅
吸收(声学)
复合材料
物理
作者
Mohd Zamir Pakhuruddin,Nur Afidah Md. Noor
出处
期刊:Key Engineering Materials
日期:2022-08-31
卷期号:930: 3-8
摘要
Thinning of crystalline silicon (c-Si) wafer is a promising approach to reduce the technology cost of passivated emitter rear cell (PERC) solar cell. However, reducing the wafer thickness compromises light absorption, hence short-circuit current density (J sc ) in the solar cell. This necessitates effective light trapping in the device. In this work, upright cone textures are incorporated on the surface of 50 μm PERC monocrystalline silicon solar cell. SunSolve ray tracer is used to simulate the optical and electrical properties of the solar cell within 300-1200 nm wavelength region. Besides, the solar cell is also simulated with a front silicon nitride (SiN x ) anti-reflective coating (ARC) on the cone textures. From the results, the thin PERC solar cell with cone textures and SiN x ARC demonstrates J sc of up to 38.8 mA/cm 2 and conversion efficiency of 20.4%. This is a significant performance improvement when compared to the planar cell, with J sc of 25.1 mA/cm 2 and efficiency of 13.1%. The improvement is attributed to the enhanced broadband light absorption and increased external quantum efficiency in the device.
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