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Verfasst von:Brohmann, Maximilian [VerfasserIn]   i
 Rother, Marcel [VerfasserIn]   i
 Schießl, Stefan Patrick [VerfasserIn]   i
 Zaumseil, Jana [VerfasserIn]   i
Titel:Temperature-dependent charge transport in polymer-sorted semiconducting carbon nanotube networks with different diameter distributions
Verf.angabe:Maximilian Brohmann, Marcel Rother, Stefan P. Schießl, Eduard Preis, Sybille Allard, Ullrich Scherf, and Jana Zaumseil
E-Jahr:2018
Jahr:July 30, 2018
Umfang:11 S.
Fussnoten:Gesehen am 14.10.2019
Titel Quelle:Enthalten in: The journal of physical chemistry <Washington, DC> / C
Ort Quelle:Washington, DC : Soc., 2007
Jahr Quelle:2018
Band/Heft Quelle:122(2018), 34, Seite 19886-19896
ISSN Quelle:1932-7455
Abstract:The availability of purely semiconducting single-walled carbon nanotube (s-SWCNT) dispersions has prompted their widespread application in solution-processed thin-film transistors with excellent device performance but has also raised the question of how their precise composition influences charge transport properties in random networks. Here, we compare hole and electron transport in three different polymer-sorted s-SWCNT networks from nearly monochiral (6,5) nanotubes (diameter 0.76 nm) to mixed networks of s-SWCNTs with medium (0.8–1.3 nm) and large (1.2–1.6 nm) diameters. Temperature-dependent field-effect mobilities are extracted from gated four-point probe measurements that exclude any contributions by contact resistance and indicate thermally activated transport. The mobility data can be fitted to the fluctuation-induced tunneling model, although with significant differences between the network compositions. The network with the broadest diameter and thus bandgap range results in the strongest temperature dependence in agreement with numerical simulations based on a random resistor model of nanotube junctions. However, the experimental data for mixed networks of large diameter nanotubes and their deviation from the simple junction model implies a significant contribution of intra-nanotube transport with its specific diameter and temperature dependence to the overall charge transport properties of the network.
DOI:doi:10.1021/acs.jpcc.8b04302
URL:Bitte beachten Sie: Dies ist ein Bibliographieeintrag. Ein Volltextzugriff für Mitglieder der Universität besteht hier nur, falls für die entsprechende Zeitschrift/den entsprechenden Sammelband ein Abonnement besteht oder es sich um einen OpenAccess-Titel handelt.

Volltext: https://doi.org/10.1021/acs.jpcc.8b04302
 DOI: https://doi.org/10.1021/acs.jpcc.8b04302
Datenträger:Online-Ressource
Sprache:eng
K10plus-PPN:1678819042
Verknüpfungen:→ Zeitschrift

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