Phase diagram of hopping conduction mechanisms in polymer nanofiber network

Network formation by nanofiber crosslinking is usually in polymer materials as application in organic semiconductor devices. Electron hopping transport mechanisms depend on polymer morphology in network. Conducting polymers morphology in a random network structure is modeled by a quasi-one-dimension...

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Veröffentlicht in:Journal of applied physics 2015-12, Vol.118 (21)
Hauptverfasser: Li, Jeng-Ting, Lu, Yu-Cheng, Jiang, Shiau-Bin, Zhong, Yuan-Liang, Yeh, Jui-Ming
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Sprache:eng
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Zusammenfassung:Network formation by nanofiber crosslinking is usually in polymer materials as application in organic semiconductor devices. Electron hopping transport mechanisms depend on polymer morphology in network. Conducting polymers morphology in a random network structure is modeled by a quasi-one-dimensional system coupled of chains or fibers. We observe the varying hopping conduction mechanisms in the polyaniline nanofibers of the random network structure. The average diameter d of the nanofibers is varied from approximately 10 to 100 nm. The different dominant hopping mechanisms including Efros-Shklovskii variable-range hopping (VRH), Mott VRH, and nearest-neighbor hopping are dependent on temperature range and d in crossover changes. The result of this study is first presented in a phase diagram of hopping conduction mechanisms based on the theories of the random network model. The hopping conduction mechanism is unlike in normal semiconductor materials.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.4936853