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High-Efficiency Large-Area Screen-Printed Solar Cell on Epitaxial Thin Active Layer With Porous Si Back Reflector Using Standard Industrial Process

机译:采用标准工业工艺在带有多孔硅背反射器的外延薄有源层上高效大面积丝网印刷太阳能电池

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摘要

Large area 17.3% high-efficiency screen-printed solar cells on a 90-μm-thick epitaxial silicon (epi-Si) active layer with a porous silicon (PSI) back reflector were fabricated using a 182-cm epitaxial wafer equivalent (EpiWE) structure and a standard industrial process. The PSI layer was studied and optimized to serve as an efficient back reflector in the finished device. An effective back surface recombination velocity (BSRV) and back internal reflectance (Rb) of 90 cm/s and 88%, respectively, were extracted by PC1D modeling of the EpiWE cell. These values of BSRV and Rb are superior to a standard industrial full Al-BSF Si solar cell, where BSRV and Rb are usually ≥200 cm/s and ∼65%, respectively. Model calculations showed very little drop in cell efficiency if the thickness of active epi-Si layer is reduced to ∼30 μm because of the good-light trapping provided by the optimized PSI back reflector.
机译:使用182厘米外延晶圆等效物(EpiWE)在厚度为90μm的具有多孔硅(PSI)背反射层的外延硅(epi-Si)有源层上制造了大面积17.3%高效丝网印刷太阳能电池结构和标准的工业流程。对PSI层进行了研究和优化,以在成品器件中用作有效的背反射器。通过EpiWE细胞的PC1D建模分别提取了有效的背面复合速度(BSRV)和背面内部反射率(Rb)分别为90cm / s和88%。 BSRV和Rb的这些值优于标准工业全Al-BSF Si太阳能电池,其中BSRV和Rb通常分别≥200 cm / s和〜65%。模型计算表明,如果将有源Epi-Si层的厚度减小到约30μm,则电池效率几乎不会下降,这是由于优化的PSI背反射器提供了良好的光陷阱。

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