Oxide Sandwiched Metal Thin-Film Electrodes for Long-Term Stable Organic Solar Cells

Oxide/silver/oxide multilayers as semitransparent top electrode for small molecule organic solar cells (OSCs) are presented. It is shown that two oxide layers sandwiching a central metal layer greatly improve the stability and lifetime of the organic solar cell. Thermally evaporated MoO3, WO3, or V2...

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Veröffentlicht in:Advanced functional materials 2012-12, Vol.22 (23), p.4993-4999
Hauptverfasser: Schubert, Sylvio, Hermenau, Martin, Meiss, Jan, Müller-Meskamp, Lars, Leo, Karl
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Sprache:eng
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Zusammenfassung:Oxide/silver/oxide multilayers as semitransparent top electrode for small molecule organic solar cells (OSCs) are presented. It is shown that two oxide layers sandwiching a central metal layer greatly improve the stability and lifetime of the organic solar cell. Thermally evaporated MoO3, WO3, or V2O5 layers are employed as an interlayer for subsequent silver deposition and significantly change the morphology of the ultrathin silver layer, improving charge extraction and electrodes series resistance. The transmittance of the electrode is increased by introducing oxide or oxide and organic multilayers as capping layer, which leads to higher photocurrent generation in the absorber layer. Application of 1 nm MoO3/11 nm Ag/10 nm MoO3/50 nm Alq3 multilayer electrodes in OSCs lead to an efficiency of 2.6% for a standard ZnPc:C60 cell, showing superior performance compared to devices with pure silver top contacts. The device lifetime is also strongly increased. MoO3 layers can saturate and stabilize the inner and outer metal surface, passivating it against most of the degradation mechanisms. With such an oxide/silver/oxide multilayer electrode, the time until the glass encapsulated OSC is degraded to 80% of its starting efficiency is enhanced from 86 h to approximately 4500 h compared to an OSC without an oxide interlayer. A stable semitransparent thin silver top contact for organic solar cells is fabricated by sandwiching it between thermally evaporated MoO3 layers. By using a MoO3 interlayer, the morphology of the Ag electrode is improved, leading to better charge collection. The sandwich increases the electrode transmittance, photocurrent generation, and lifetime. With this, more efficient solar cells with lifetimes of 4500 h are achieved.
ISSN:1616-301X
1616-3028
DOI:10.1002/adfm.201201592