Eisenlohr Johannes, Benick Jan, Peters Marius, Bläsi Benedikt, Goldschmidt Jan Christoph, Hermle Martin
Opt Express. 2014 Jan 13;22 Suppl 1:A111-9. doi: 10.1364/OE.22.00A111.
Enhanced absorption of near infrared light in silicon solar cells is important for achieving high conversion efficiencies while reducing the solar cell's thickness. Hexagonal gratings on the rear side of solar cells can achieve such absorption enhancement. Our wave optical simulations show photocurrent density gains of up to 3 mA/cm2 for solar cells with a thickness of 40 µm and a planar front side. Hexagonal sphere gratings have been fabricated and optical measurements confirm the predicted absorption enhancement. The measured absorption enhancement corresponds to a photocurrent density gain of 1.04 mA/cm2 for planar wafers with a thickness of 250 µm and 1.49 mA/cm2 for 100 µm.
增强硅太阳能电池对近红外光的吸收对于在降低太阳能电池厚度的同时实现高转换效率至关重要。太阳能电池背面的六边形光栅可以实现这种吸收增强。我们的波动光学模拟表明,对于厚度为40 µm且正面为平面的太阳能电池,光电流密度增益可达3 mA/cm²。已经制造出六边形球面光栅,光学测量证实了预测的吸收增强。对于厚度为250 µm的平面晶圆,测量到的吸收增强对应于1.04 mA/cm²的光电流密度增益,对于100 µm的晶圆则为1.49 mA/cm²。