Probing molecular orientation of P3HT nanofibers in fiber-based organic solar cells

Molecular orientation of conjugated polymers plays a key role in exciton generation/separation and charge transport, and thus significantly influence photovoltaic devices. Herein, we fabricated fiber-based organic solar cells and investigated the photovoltaic parameters with different diameters of f...

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Veröffentlicht in:Electronic materials letters 2018, 14(1), , pp.46-51
Hauptverfasser: Yoon, Sangcheol, Han, Yaeeun, Hwang, Inchan
Format: Artikel
Sprache:eng
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Zusammenfassung:Molecular orientation of conjugated polymers plays a key role in exciton generation/separation and charge transport, and thus significantly influence photovoltaic devices. Herein, we fabricated fiber-based organic solar cells and investigated the photovoltaic parameters with different diameters of fibers and PCBM diffusion. The open-circuit voltage that varies with molecular orientation whether it is face-on or edge-on was observed to differ. The investigation of the open-circuit voltage dependence reveals that thick fibers have core/shell like structures with different orientations. Thick fibers have face-on in the core and edge-on orientations in the shell. The face-on orientations are not preferentially formed in thin fibers, but the PCBM diffusion can induce face-on orientations that exist within the intermixed phase. Our results may shed a light on better understanding on fiber-based solar cells and suggest a way toward improving photovoltaic efficiency.
ISSN:1738-8090
2093-6788
DOI:10.1007/s13391-017-7155-9