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Efficient, Large Area, and Thick Junction Polymer Solar Cells with Balanced Mobilities and Low Defect Densities

机译:具有平衡的迁移率和低缺陷密度的高效,大面积和厚结型聚合物太阳能电池

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摘要

The high power conversion efficiencies (PCEs) of laboratory-scale polymer-based organic solar cells are yet to translate to large area modules because of a number of factors including the relatively large sheet resistance of available transparent conducting electrodes (TCEs), and the high defect densities associated with thin organic semiconductor junctions. The TCE problem limits device architectures to narrow connected strips (<1 cm) causing serious fabrication difficulties and extra costs. Thin junctions are required because of poor charge transport (imbalanced mobilities) in the constituent organic semiconductors. These issues are addressed using a combination of approaches to create thick junctions conformally coated on low sheet resistance metal grid TCEs. An essential feature of these thick junctions is balanced carrier mobilities, which affords high fill factors and efficient carrier extraction. Conformal coating is achieved by promoting enhanced intermolecular interactions in the coating solution using a high molecular weight polymeric semiconductor and appropriate solvent system. This combination of balanced mobilities, conformal coating and metallic grid TCEs is a simple and generic approach to the fabrication of defect-free large area organic solar cells (OSCs). The approach is demonstrated with 25 cm2 monolithic devices possessing aperture-corrected power conversion efficiencies of 5% and fill factors exceeding 0.5.
机译:实验室规模的基于聚合物的有机太阳能电池的高功率转换效率(PCE)尚未转化为大面积模块,这是因为许多因素,包括可用的透明导电电极(TCE)的相对较大的薄层电阻以及与薄有机半导体结相关的缺陷密度。 TCE问题将设备架构限制为狭窄的连接带(<1 cm),从而导致严重的制造困难和额外成本。由于组成有机半导体中的电荷传输不良(迁移率不平衡),因此需要薄结。通过使用多种方法来解决这些问题,以创建在低薄层电阻金属栅极TCE上共形涂覆的厚结。这些厚的连接点的基本特征是平衡的载流子迁移率,可提供高填充因子和有效的载流子提取能力。通过使用高分子量聚合物半导体和适当的溶剂体系促进涂层溶液中分子间相互作用的增强,可以实现保形涂层。平衡的迁移率,保形涂层和金属网格TCE的结合是制造无缺陷大面积有机太阳能电池(OSC)的简单通用方法。 25 cm2的单片器件通过孔径校正的功率转换效率为5%,填充因子超过0.5,证明了该方法。

著录项

  • 来源
    《Advanced energy materials》 |2015年第3期|1-7|共7页
  • 作者单位

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

    Institute of Materials Research and Engineering Agency for Science Technology and Research Singapore;

    Institute of Materials Research and Engineering Agency for Science Technology and Research Singapore;

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

    Centre for Organic Photonics Electronics The University of Queensland Brisbane QLD Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    organic solar cells; charge carrier mobility; thick organic junctions; transparent conductive electrodes;

    机译:有机太阳能电池;载流子迁移率;厚有机结;透明导电电极;

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