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Simulation and analysis of Si/PEDOT:PSS hybrid interdigitated back contact solar cell

机译:SI / PEDOT的仿真分析:PSS混合交叉反触点太阳能电池

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Interdigitated back contact (IBC) cells show higher conversion efficiencies as compared to conventional homojunction c-Si solar cells, because the optical shadowing loss by front-side metal fingers and bus bars is completely eliminated. Poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) is a highly conductive polymer. The Si/PEDOT:PSS hybrid solar cell with interdigitated back contact (IBC) structure combined the solution-based processing advantage of an organic polymer has better performance and lower cost compared with other Si IBC solar cells. In this paper, The influence of PEDOT:PSS layer thickness, PEDOT:PSS conductivity and the interface recombination velocity between silicon and PEDOT:PSS layer on the photovoltaic performance of Si/PEDOT:PSS hybrid IBC solar cell are investigated by two-dimensional simulation software Silvaco TCAD Atlas. The simulation results indicate that the short circuit current, open circuit voltage, fill factor and conversion efficiency with the increase of the PEDOT:PSS layer thickness have a very small increase. it is inferred that PEDOT:PSS layer thickness has a wider process window. In addition, the PEDOT:PSS conductivity over 800 S/cm is advantageous for obtaining a higher conversion efficiency. And the interface recombination velocity between silicon and PEDOT:PSS layer should be less than 1000 cm/s. With the optimum unit design of Si/PEDOT:PSS hybrid IBC solar cell, an enhanced conversion efficiency 21.56% is demonstrated by the simulation under the given simulation conditions.
机译:与传统的同性全调C-Si太阳能电池相比,交叉的背面接触(IBC)细胞显示出更高的转换效率,因为完全消除了前侧金属手指和汇流条的光学遮蔽损失。聚(3,4-亚乙二氧基噻吩) - 聚(苯乙烯磺酸盐)(PEDOT:PSS)是一种高导电聚合物。 SI / PEDOT:PSS混合太阳能电池具有交叉的背面接触(IBC)结构,与其他SI IBC太阳能电池相比,有机聚合物的基于溶液的加工优势具有更好的性能和更低的成本。在本文中,PEDOT的影响:PSS层厚度,PEDOT:PSS电导率和硅和PEDOT之间的界面复合速度:PSS层对SI / PEDOT的光伏性能下的PSS层:通过二维模拟研究了PSS杂合IBC太阳能电池软件Silvaco TCAD Atlas。仿真结果表明,短路电流,开路电压,填充因子和转换效率随佩特的增加:PSS层厚度具有非常小的增加。推断出PEDOT:PSS层厚度具有更宽的工艺窗口。另外,PEDOT:PSS电导率超过800秒/厘米是有利于获得更高的转换效率。硅和PEDOT之间的界面重组速度:PSS层应小于1000cm / s。利用Si / PEDOT的最佳单元设计:PSS混合IBC太阳能电池,通过给定的模拟条件下的模拟证明了增强的转换效率21.56%。

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