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Green-Solvent-Processed All-Polymer Solar Cells Containing a Perylene Diimide-Based Acceptor with an Efficiency over 6.5%

机译:绿色溶剂加工的全聚合物太阳能电池,含有基于二酰亚胺的受体,效率超过6.5%

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摘要

To realize high power conversion efficiencies (PCEs) in green-solvent-processed all-polymer solar cells (All-PSCs), a long alkyl chain modified perylene diimide (PDI)-based polymer acceptor PPDIODT with superior solubility in nonhalogenated solvents is synthesized. A properly matched PBDT-TS1 is selected as the polymer donor due to the red-shifted light absorption and low-lying energy level in order to achieve the complementary absorption spectrum and matched energy level between polymer donor and polymer acceptor. By utilizing anisole as the processing solvent, an optimal efficiency of 5.43% is realized in PBDT-TS1/PPDIODT-based All-PSC with conventional configuration, which is comparable with that of All-PSCs processed by the widely used binary solvent. Due to the utilization of an inverted device configuration, the PCE is further increased to over 6.5% efficiency. Notably, the best-performing PCE of 6.58% is the highest value for All-PSCs employing PDI-based polymer acceptors and green-solvent-processed All-PSCs. The excellent photovoltaic performance is mainly attributed to a favorable vertical phase distribution, a higher exciton dissociation efficiency (P-diss) in the blend film, and a higher electrode carrier collection efficiency. Overall, the combination of rational molecular designing, material selection, and device engineering will motivate the efficiency breakthrough in green-solvent-processed All-PSCs.
机译:为了实现绿色溶剂加工的全聚合物太阳能电池(All-PSC)中的高功率转换效率(PCE),合成了具有优异的非卤代溶剂溶解度的长烷基链改性的Perylene二酰亚胺(PDI)的聚合物受体Ppdiodt。由于红色移位的光吸收和低位能量水平,选择适当匹配的PBDT-TS1作为聚合物供体,以实现聚合物供体和聚合物受体之间的互补吸收光谱和匹配的能量水平。通过利用苯甲醚作为加工溶剂,最佳效率为5.43%,以常规构造在PBDT-TS1 / PPDiodt基的全-SPC中实现,其与由广泛使用的二元溶剂加工的全PSC的全型效率实现。由于倒置器件配置的利用率,PCE进一步增加到超过6.5%的效率。值得注意的是,最佳性能为6.58%是使用基于PDI的聚合物受体和绿色溶剂加工的全PSC的全-SPS的最高值。优异的光伏性能主要归因于良好的垂直相分布,共混膜中具有更高的激子解离效率(P溶解),以及更高的电极载体收集效率。总体而言,合理的分子设计,材料选择和设备工程的组合将激励绿色溶剂加工的全-SPS中的效率突破。

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  • 来源
    《Advanced energy materials》 |2016年第5期|1501991.1-1501991.9|共9页
  • 作者单位

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Beijing Natl Lab Mol Sci State Key Lab Polymer Phys & Chem Beijing 100190 Peoples R China;

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

    all-polymer solar cells; device engineering; green solvents; perylene diimides; polymer acceptors;

    机译:全聚合物太阳能电池;器件工程;绿色溶剂;Perylene Diidides;聚合物受体;

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