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Improved Homogeneous Emitter Solar Cells with Double Layer Anti-reflection Coatings

机译:用双层防反射涂层改进均匀发射极太阳能电池

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A double layer SiNx stack shows a better performance compared to conventional single layer SiNx ARC on monocrystalline silicon cells. The double layer SiNx ARC shows a lower reflectivity in the wavelength range of 350-500nm than single layer SiNx, which is quite beneficial to the high sheet resistance emitters featuring good blue spectrum response. In this experiment, the solar cells have a traditional structure with optimized homogenous emitters (HE) having a sheet resistance of 75Ω/sq. Well controlled screen-printing and firing conditions have led to a fill factor up to 79.0% and efficiency up to 18.9% on monocrystalline solar cells, and demonstrated a 0.5% efficiency gain compared to baseline solar cells with single layer SiNx ARC. In comparison to the single layer ARC, there is an increase of 2.8 mV in V_(oc) and 0.4 mA/cm~2 in J_(scFurthermore, the fill factor is improved due to the fact that the screen-printed fingers show a better profile on the double layer ARCs' cells.
机译:与单晶硅电池上的传统单层SINX弧相比,双层SINX堆叠显示出更好的性能。双层SINX弧显示波长范围的较低反射率350-500nm的单层SINX,这对于具有良好蓝光谱反应的高薄层电阻发射器非常有利。在该实验中,太阳能电池具有传统结构,具有优化的均匀发射器(HE),其薄层电阻为75Ω/ sq。受控丝网印刷和烧制条件导致填充因子高达79.0%,并且在单晶太阳能电池上效率高达18.9%,与具有单层SINX弧的基线太阳能电池相比,效率增益显示为0.5%。与单层电弧相比,v_(oc)中增加了2.8 mV,在J_(SCFURTHORE,由于屏幕印刷的手指显示出更好的事实,填充因子得到改善在双层弧形单元上的配置文件。

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