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Asymmetric organic semiconductors for high performance single crystalline field-effect transistors with low activation energy
26
Citations
60
References
2020
Year
EngineeringOrganic ElectronicsOrganic ChemistryChemistrySemiconductorsAsymmetric Organic SemiconductorsAsymmetric StructuresElectrical EngineeringOrganic SemiconductorAsymmetric Anthracene DerivativesHigh Field-effect MobilityOrganic MaterialsOrganic Charge-transfer CompoundOrganic Material ChemistryElectronic MaterialsSemiconducting PolymerApplied PhysicsConjugated PolymerMolecule-based MaterialLow Activation Energy
We synthesized three asymmetric anthracene derivatives, in which <bold>2-phvA</bold> shows a high field-effect mobility of 10 cm<sup>2</sup> V<sup>−1</sup> s<sup>−1</sup>. This work demonstrates the potential advantages of asymmetric structures for high-performance organic semiconductors.
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