2015
DOI: 10.1063/1.4919649
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Optimizing the fabrication process and interplay of device components of polymer solar cells using a field-based multiscale solar-cell algorithm

Abstract: Both the device composition and fabrication process are well-known to crucially affect the power conversion efficiency of polymer solar cells. Major advances have recently been achieved through the development of novel device materials and inkjet printing technologies, which permit to improve their durability and performance considerably. In this work, we demonstrate the usefulness of a recently developed field-based multiscale solar-cell algorithm to investigate the influence of the material characteristics, … Show more

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Cited by 2 publications
(1 citation statement)
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“…A cascaded energy level distribution is the requirement for such mechanisms to take place . In contrast, in the energy transfer model, the third component serves as an “energy donor” which absorbs additional solar energy and delivers it to donor or acceptor by Förster or Dexter energy transfer . Ternary devices based on charge transfer or energy transfer mechanisms improve J sc by utilizing additional solar energy .…”
Section: Photovoltaic Parameters Of the Pm6:y6‐based Oscs With Varioumentioning
confidence: 99%
“…A cascaded energy level distribution is the requirement for such mechanisms to take place . In contrast, in the energy transfer model, the third component serves as an “energy donor” which absorbs additional solar energy and delivers it to donor or acceptor by Förster or Dexter energy transfer . Ternary devices based on charge transfer or energy transfer mechanisms improve J sc by utilizing additional solar energy .…”
Section: Photovoltaic Parameters Of the Pm6:y6‐based Oscs With Varioumentioning
confidence: 99%