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首页> 外文期刊>Journal of the American Chemical Society >Qualitative Analysis of Bulk-Heterojunction Solar Cells without Device Fabrication: An Elegant and Contactless Method
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Qualitative Analysis of Bulk-Heterojunction Solar Cells without Device Fabrication: An Elegant and Contactless Method

机译:无需制造器件的大体积异质结太阳能电池的定性分析:一种优雅且无接触的方法

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摘要

The enormous synthetic efforts on novel solar cell materials require a reliable and fast technique for the rapid screening of novel donor/acceptor combinations in order to quickly and reliably estimate their optimized parameters. Here, we report the applicability of such a versatile and fast evaluation technique for bulk heterojunction (BHJ) organic photovoltaics (OPV) by utilizing a steady-state photo-luminescence (PL) method confirmed by electroluminescence (EL) measurements. A strong relation has been observed between the residual singlet emission and the charge transfer state emission in the blend. Using this relation, a figure of merit (FOM) is defined from photoluminescence and also electroluminescence measurements for qualitative analysis and shown to precisely anticipate the optimized blend parameters of bulk heterojunction films. Photoluminescence allows contactless evaluation of the photoactive layer and can be used to predict the optimized conditions for the best polymer-fullerene combination. Most interestingly, the contactless, PL-based FOM method has the potential to be integrated as a fast and reliable InIine tool for quality control and material optimization.
机译:在新型太阳能电池材料上的巨大合成努力需要一种可靠,快速的技术,用于快速筛选新型供体/受体组合,以便快速,可靠地估算其优化参数。在这里,我们通过利用通过电致发光(EL)测量确认的稳态光致发光(PL)方法,报告了这种用于块状异质结(BHJ)有机光伏(OPV)的多功能,快速评估技术的适用性。在混合物中的残余单线态发射与电荷转移态发射之间已观察到很强的关系。利用这种关系,可以从光致发光和电致发光测量结果中定义品质因数(FOM),以进行定性分析,并且可以精确预测体相异质结薄膜的最佳混合参数。光致发光允许对光敏层进行无接触评估,并可用于预测最佳聚合物-富勒烯组合的最佳条件。最有趣的是,基于PL的非接触式FOM方法有可能被集成为用于质量控制和材料优化的快速可靠的InIine工具。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第31期|10949-10955|共7页
  • 作者单位

    Institute of Materials for Electronics and Energy Technology (i-MEET), Friedrich-Alexander-University of Erlangen-Nuernberg,Martensstrasse 7, 91058, Erlangen, GERMANY;

    Institute of Materials for Electronics and Energy Technology (i-MEET), Friedrich-Alexander-University of Erlangen-Nuernberg,Martensstrasse 7, 91058, Erlangen, GERMANY;

    Universite Laval, Department of Chemistry, Pavilion Alexandre-Vachon, Bureau 2240-C1045, Avenue de la Medicine, G1 V 0A6 Quebec, QC, Canada,Corporation Scientifique Claisse, 350 rue Franquet, Suite 45,Quebec, Quebec, Canada G1P 4P3;

    Institute of Materials for Electronics and Energy Technology (i-MEET), Friedrich-Alexander-University of Erlangen-Nuernberg,Martensstrasse 7, 91058, Erlangen, GERMANY;

    Institute of Materials for Electronics and Energy Technology (i-MEET), Friedrich-Alexander-University of Erlangen-Nuernberg,Martensstrasse 7, 91058, Erlangen, GERMANY;

    Universite Laval, Department of Chemistry, Pavilion Alexandre-Vachon, Bureau 2240-C1045, Avenue de la Medicine, G1 V 0A6 Quebec, QC, Canada;

    Institute of Materials for Electronics and Energy Technology (i-MEET), Friedrich-Alexander-University of Erlangen-Nuernberg,Martensstrasse 7, 91058, Erlangen, GERMANY,Bavarian Center for Applied Energy Research (ZAE Bayern), Haberstr. 2a, 91058 Erlangen, GERMANY;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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