High rectification in organic diodes based on liquid crystalline phthalocyanines

The optical and electrical properties of mesogenic metal-free and metalated phthalocyanines (PCs) with a moderately sized and regioregular alkyl periphery were investigated. In solution, the individualized molecules show fluorescence lifetimes of 4-6 ns in THF. When deposited as solid thin films the...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2015-01, Vol.17 (48), p.32390-32397
Hauptverfasser: Apostol, Petru, Eccher, Juliana, Dotto, Marta Elisa Rosso, Costa, Cassiano Batesttin, Cazati, Thiago, Hillard, Elizabeth A, Bock, Harald, Bechtold, Ivan H
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Sprache:eng
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Zusammenfassung:The optical and electrical properties of mesogenic metal-free and metalated phthalocyanines (PCs) with a moderately sized and regioregular alkyl periphery were investigated. In solution, the individualized molecules show fluorescence lifetimes of 4-6 ns in THF. When deposited as solid thin films the materials exhibit significantly shorter fluorescence lifetimes with bi-exponential decay (1.4-1.8 ns; 0.2-0.4 ns) that testify to the formation of aggregates viaπ-π intermolecular interactions. In diode structures, their pronounced columnar order outbalances the unfavorable planar alignment and leads to excellent rectification behavior. Field-dependent charge carrier mobilities are obtained from the J-V curves in the trap-limited space-charge-limited current regime and demonstrate that the metalated PCs display an improved electrical response with respect to the metal-free homologue. The excited-state lifetime characterization suggest that the π-π intermolecular interactions are stronger for the metal-free PC, confirming that the metallic centre plays an important role in the charge transport inside these materials.
ISSN:1463-9076
1463-9084
DOI:10.1039/c5cp05582b