Advanced Functional Materials · 2013 · 47 citations · 34 references
Materials ScienceEngineeringElectronic MaterialsOrganic ElectronicsSurface ScienceApplied PhysicsOrganic SemiconductorNas Glass SurfaceGlass MaterialFunctional GlassUltra‐strong Ion‐exchanged GlassChemistryThin FilmsDevice DesignsIon MigrationOrganic Materials
Abstract The introduction of new substrate materials into the world of electronics has previously opened up new possibilities for novel applications and device designs. Here, the use of ion‐exchanged sodium aluminosilicate (NAS) glass is presented as a new type of substrate that is not only highly damage resistant, but also allows the fabrication of high performance organic electronic devices. The smoothness of the NAS glass surface enables favorable growth of the semiconductor layer, enabling high charge carrier mobilities for typical organic semiconductors, such as pentacene or C60, and a polymer semiconductor. No degradation of the device performance is observed as a result of ion migration into the active device region, and no compromise in substrate strength due to the processing conditions is made. This work suggests the possibility of new, highly durable electronic devices on glass in large area format.
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Yutaka Ito, Ajay Virkar, Stefan C. B. Mannsfeld et al. · Journal of the American Chemical Society · 2009 · 591 citations
Materials Science, Organic Charge-transfer Compound, Organic Material Chemistry +15