Applied Physics Letters · 2010 · 17 citations · 18 references
Materials ScienceOrganic Charge-transfer CompoundPentacene Active LayerEngineeringPhotochemistryOrganic ElectronicsNanoelectronicsCarrier MobilitySurface ScienceApplied PhysicsSemiconducting PolymerOrganic SemiconductorPhotochemical ControlPentacene GrowthConjugated PolymerChemistryGrain SizeOptoelectronics
We use a photoreactive interfacial layer of poly(endo,exo-bis(2-nitrobenzyl) bicyclo[2.2.1]hept-5-ene-2,3-dicarboxylate) (PBHND) between the gate dielectric and the pentacene active layer to tune the effective hole mobility in organic thin film transistors over approximately one order of magnitude. This can be explained by the photoconversion of the PBHND layer changing its surface energy and thus strongly impacting pentacene growth. A linear relationship between the mobility and the grain size is observed.
18
Estimation of the surface free energy of polymers
D.K. Owens, R. C. Wendt · Journal of Applied Polymer Science · 1969 · 9K citations
Max Shtein, Jonathan K. Mapel, Jay B. Benziger et al. · Applied Physics Letters · 2002 · 673 citations
Engineering, Organic Electronics, Thin Film Process Technology +16