Enhanced performance of inverted polymer solar cells with cathode interfacial tuning via water-soluble polyfluorenes

Enhanced performance of inverted polymer solar cells (PSCs) is demonstrated by indium tin oxide (ITO) interfacial tuning via a water-soluble polyfluorene (WPF-6-oxy-F). Kelvin probe studies and dark current-voltage curves demonstrated that the WPF-6-oxy-F layer reduces the ITO work-function because...

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Veröffentlicht in:Applied physics letters 2010-11, Vol.97 (22), p.223305-223305-3
Hauptverfasser: Na, Seok-In, Kim, Tae-Soo, Oh, Seung-Hwan, Kim, Junkyung, Kim, Seok-Soon, Kim, Dong-Yu
Format: Artikel
Sprache:eng
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Zusammenfassung:Enhanced performance of inverted polymer solar cells (PSCs) is demonstrated by indium tin oxide (ITO) interfacial tuning via a water-soluble polyfluorene (WPF-6-oxy-F). Kelvin probe studies and dark current-voltage curves demonstrated that the WPF-6-oxy-F layer reduces the ITO work-function because of the favorable interfacial dipole formed by the WPF-6-oxy-F interlayer, thereby enhancing the built-in potential and reducing the interface resistance. As a result, introduction of the WPF-6-oxy-F by simple solution processing into the inverted PSCs dramatically enhanced cell-performances. This approach could be very beneficial and an important step for the future development of all-solution-processed or roll-to-roll processed PSCs.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.3522893