PDF) Barrierless hole injection through sub-bandgap occupied states in organic light emitting diodes using substoichiometric MoOx anode interfacial layer
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Ioannis Palilis - Greece | Professional Profile | LinkedIn
Vapor-deposited hydrogenated and oxygen-deficient molybdenum oxide thin films for application in organic optoelectronics – topic of research paper in Materials engineering. Download scholarly article PDF and read for free on CyberLeninka open
Functionalized Zinc Porphyrins with Various Peripheral Groups for Interfacial Electron Injection Barrier Control in Organic Light Emitting Diodes. - Abstract - Europe PMC
Advanced Functional Materials: Vol 21, No 8
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Dehydration of molybdenum oxide hole extraction layers via microwave annealing for the improvement of efficiency and lifetime in organic solar cells - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/C6TC02259F
FC and BC Cover art-pp16 - 1.indd - Royal Society of Chemistry
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Barrierless hole injection through sub-bandgap occupied states in organic light emitting diodes using substoichiometric MoOx anode interfacial layer: Applied Physics Letters: Vol 100, No 1
Dehydration of molybdenum oxide hole extraction layers via microwave annealing for the improvement of efficiency and lifetime in organic solar cells - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/C6TC02259F
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Molecular Oligothiophene–Fullerene Dyad Reaching Over 5% Efficiency in Single-Material Organic Solar Cells,Advanced Materials - X-MOL
High performance organic light emitting diodes using substoichiometric tungsten oxide as efficient hole injection layer - ScienceDirect
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Nanostructured Metal Oxides as Cathode Interfacial Layers for Hybrid-Polymer Electronic Devices | Scientific.Net
Barrierless hole injection through sub-bandgap occupied states in organic light emitting diodes using substoichiometric MoOx anode interfacial layer: Applied Physics Letters: Vol 100, No 1
Enhanced Organic and Perovskite Solar Cell Performance through Modification of the Electron-Selective Contact with a Bodipy-Porphyrin Dyad.,ACS Applied Materials & Interfaces - X-MOL
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G. PAPADIMITROPOULOS | National Center for Scientific Research Demokritos, Athens | ncsr | Institute of Microelectronics
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