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The research interests of Prof. S. Logothetidis include the following:
Organic Electronics: Development of active (organic semiconductors) and passive materials (transparent electrodes, barrier layers) and fabrication of Organic Electronic devices that include Organic PhotoVoltaic cells - OPVs, Organic Thin Film Transistors - OTFTs, Organic Light Emitting Diodes – OLEDs, Biosensors onto flexible and rigid substrates, by vacuum, wet and printing methods in batch and roll-to-roll (r2r) configuration. Investigation of optical, electrical, structural properties of the organic semiconductors & conductors and charge transport mechanisms.
Thin Films & Nanosystems Fabrication of advanced nanoscale materials, e.g, super-hard carbon structures, diamond-like carbon, nitrides, metal oxides, boron and silicon nanostructures, in the form of multifunctional thin films, multi-layers and super-lattices on inorganic and flexible polymeric substrates.
NanoMedicine: Development of functionalized polymers and biocompatible materials and investigation of the adsorption of biological agents (e.g. proteins, DNA, blood cells) onto their surface by non-destructive optical techniques. Synthesis of nanoparticles, and scaffolds for drug delivery and tissue regeneration
Organic Electronics: Development of active (organic semiconductors) and passive materials (transparent electrodes, barrier layers) and fabrication of Organic Electronic devices that include Organic PhotoVoltaic cells - OPVs, Organic Thin Film Transistors - OTFTs, Organic Light Emitting Diodes – OLEDs, Biosensors onto flexible and rigid substrates, by vacuum, wet and printing methods in batch and roll-to-roll (r2r) configuration. Investigation of optical, electrical, structural properties of the organic semiconductors & conductors and charge transport mechanisms.
Thin Films & Nanosystems Fabrication of advanced nanoscale materials, e.g, super-hard carbon structures, diamond-like carbon, nitrides, metal oxides, boron and silicon nanostructures, in the form of multifunctional thin films, multi-layers and super-lattices on inorganic and flexible polymeric substrates.
NanoMedicine: Development of functionalized polymers and biocompatible materials and investigation of the adsorption of biological agents (e.g. proteins, DNA, blood cells) onto their surface by non-destructive optical techniques. Synthesis of nanoparticles, and scaffolds for drug delivery and tissue regeneration
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MATERIALSno. 1 (2024): 76
Virchows Archiv : an international journal of pathologyno. 6 (2023): 775-786
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