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Influence of molecular weight on the short-channel effect in polymer-based field-effect transistors

dc.contributor.authorTunc, Ali Veysel
dc.contributor.authorEcker, Bernhard
dc.contributor.authorDogruyol, Zekeriya
dc.contributor.authorJuechter, Sabrina
dc.contributor.authorUgur, Ahmet Lutfi
dc.contributor.authorErdogmus, Ali
dc.contributor.authorSan, Sait Eren
dc.contributor.authorParisi, Juergen
dc.contributor.authorvon Hauff, Elizabeth
dc.date.accessioned2026-06-27T13:18:12Z
dc.date.issued2012
dc.description.abstractIn this study, we demonstrate how the intrinsic properties of a polymer can influence the electrical characteristics of organic field-effect transistors (OFETs). OFETs fabricated with three batches of poly[2-methoxy,5-(3',7'-dimethyl-octyloxy)]-p-phenylene vinylene (MDMO-PPV) were investigated. The properties of the polymers were initially investigated using Fourier transform infrared spectroscopy (FTIR), impedance spectroscopy (IS), gel permeation chromotography (GPC), and cyclic voltammetry (CV), respectively. The structure and purity of the polymer batches were found to be very comparable, but the molecular weight (Mn and Mw) and polydispersity (PDI = Mw/Mn), varied between the samples and the HOMO and LUMO levels of the polymers were found to depend on the molecular weight properties. OFETs were then fabricated with the polymers and electrically characterized. It was observed that the channel current and the field-effect mobility increase with increasing polymer molecular weight. The output characteristics of the transistors, on the other hand, were found to depend on the PDI of the polymer. Saturation of the channel current occurs at higher sourcedrain voltages and short-channel behavior was observed to start at longer channel lengths for polymers with a higher PDI. This behavior is observed to be thickness dependent, and the short-channel behavior was more pronounced for thicker MDMO-PPV films. These results are explained in terms of influences of chain packing and ordering and high bulk currents on the FET output and transistor parameters. (C) 2011 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 50: 117124, 2012en
dc.description.sponsorshipDFG [SPP1355]
dc.description.sponsorshipEWE-Nachwuchsgruppe Dunnschichtphotovoltaik
dc.description.sponsorshipEWE AG Oldenburg
dc.description.urihttps://doi.org/10.1002/polb.22353
dc.identifier.doi10.1002/polb.22353
dc.identifier.eissn1099-0488
dc.identifier.endpage124
dc.identifier.issn0887-6266
dc.identifier.issue2
dc.identifier.startpage117
dc.identifier.urihttps://hdl.handle.net/20.500.14981/51669
dc.identifier.volume50
dc.identifier.wos000298586500004
dc.language.isoeng
dc.publisherWILEY
dc.relation.ispartofJOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS
dc.subjectcharge transport
dc.subjectconjugated polymers
dc.subjectdisorder
dc.subjectmolecular weight distribution
dc.subjectstructure-property relations
dc.subjectTHIN-FILM TRANSISTORS
dc.subjectPERFORMANCE
dc.subjectFABRICATION
dc.subjectMOBILITY
dc.subjectCOPOLYMERS
dc.subjectMORPHOLOGY
dc.subjectPolymer Science
dc.titleInfluence of molecular weight on the short-channel effect in polymer-based field-effect transistors
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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