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Improved Separation and Collection of Charge Carriers in Micro-Pyramidal-Structured Silicon/PEDOT:PSS Hybrid Solar Cells

机译:微型金字塔形结构的硅/ PEDOT:PSS混合太阳能电池中电荷载流子的改进分离和收集

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Silicon (Si)/organic polymer hybrid solar cells have great potential for becoming cost-effective and efficient energy-harvesting devices. We report herein on the effects of polymer coverage and the rear electrode on the device performance of Si/poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) hybrid solar cells with micro-pyramidal structures. These hybrid solar cells provided adequate generation of charge carriers owing to the suppression of reflectance to below 13%. Additionally, the separation of the photogenerated charge carriers at the micro-pyramidal-structured Si/PEDOT:PSS interface regions and their collection at the electrodes were dramatically improved by tuning the adhesion areas of the PEDOT:PSS layer and the rear electrode materials, thereby attaining a power conversion efficiency of 8.25%. These findings suggest that it is important to control the PEDOT:PSS coverage and to optimize the rear electrode materials in order to achieve highly efficient separation of the charge carriers and their effective collection in micro-textured hybrid solar cells.
机译:硅(Si)/有机聚合物混合太阳能电池具有成为具有成本效益和高效的能量收集设备的巨大潜力。我们在这里报告的聚合物覆盖率和后电极对具有微金字塔结构的Si /聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)混合太阳能电池的器件性能的影响。这些混合太阳能电池由于将反射率抑制在13%以下,因此提供了足够的电荷载流子。此外,通过调整PEDOT:PSS层与背面电极材料的附着面积,显着改善了微金字塔结构的Si / PEDOT:PSS界面区域处光生电荷载体的分离及其在电极处的收集。功率转换效率达到8.25%。这些发现表明,重要的是控制PEDOT:PSS的覆盖范围并优化后电极材料,以实现电荷载流子的高效分离以及它们在微织构混合太阳能电池中的有效收集。

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