4.7 Article

Molecular weight dependent bimolecular recombination in organic solar cells

期刊

JOURNAL OF CHEMICAL PHYSICS
卷 141, 期 5, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/1.4891369

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资金

  1. Australian Research Council Discovery Early Career Researcher Award [ARC DECRA DE120102271, UQ ECR59-2011002311, UQ NSRSF-2011002734]
  2. Australian Postgraduate Award (APA)
  3. University of Queensland International scholarship (UQI)
  4. University of Queensland (Strategic Initiative - Centre for Organic Photonics and Electronics)
  5. Queensland Government (National and International Research Alliances Program)
  6. ARC Centre of Excellence for Antimatter-Matter Studies

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Charge carrier recombination is studied in operational organic solar cells made from the polymer: fullerene system PCDTBT: PC71BM (poly[N-9 ''-heptadecanyl-2,7-carbazole-alt-5,5-(4 ',7 ' -di-2-thienyl- 2 ',1 ',3 ' -benzothiadiazole)]: [6,6]-phenyl-C70-butyric acid methyl ester). A newly developed technique High Intensity Resistance dependent PhotoVoltage is presented for reliably quantifying the bimolecular recombination coefficient independently of variations in experimental conditions, thereby resolving key limitations of previous experimental approaches. Experiments are performed on solar cells of varying thicknesses and varying polymeric molecular weights. It is shown that solar cells made from low molecular weight PCDTBT exhibit Langevin recombination, whereas suppressed (non-Langevin) recombination is found in solar cells made with high molecular weight PCDTBT. (C) 2014 AIP Publishing LLC.

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