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Dive into the research topics where Sylvio Schubert is active.

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Featured researches published by Sylvio Schubert.


Applied Physics Letters | 2015

White organic light-emitting diodes with 4 nm metal electrode

Simone Lenk; Tobias Schwab; Sylvio Schubert; Lars Müller-Meskamp; Karl Leo; Malte C. Gather; Sebastian Reineke

We investigate metal layers with a thickness of only a few nanometers as anode replacement for indium tin oxide (ITO) in white organic light-emitting diodes (OLEDs). The ultrathin metal electrodes prove to be an excellent alternative that can, with regard to the angular dependence and efficiency of the OLED devices, outperform the ITO reference. Furthermore, unlike ITO, the thin composite metal electrodes are readily compatible with demanding architectures (e.g., top-emission or transparent OLEDs, device unit stacking, etc.) and flexible substrates. Here, we compare the sheet resistance of both types of electrodes on polyethylene terephthalate for different bending radii. The electrical performance of ITO breaks down at a radius of 10 mm, while the metal electrode remains intact even at radii smaller than 1 mm.


Light, Energy and the Environment (2014), paper DW5C.2 | 2014

Ultrathin Silver Electrodes for Transparent Organic Light-Emitting Diodes

Simone Hofmann; Tobias Schwab; Felix Fries; Markus Fröbel; Sylvio Schubert; Lars Müller-Meskamp; Karl Leo; Malte C. Gather; Sebastian Reineke

The performance of ultrathin silver electrodes is compared to conventional indium tin oxide when used in transparent white organic light-emitting diodes. These electrodes provide a valid alternative.


Asia Communications and Photonics Conference 2014 (2014), paper AF2G.2 | 2014

Transparent Electrodes for Organic Photovoltaics and OLEDs

Lars Mueller-Meskamp; Franz Selzer; Ludwig Bormann; Alexander Schubert; Sylvio Schubert; Nelli Weiss; Karl Leo

Different low-cost and flexible transparent electrode technologies, such as metal thin films (dielectric-metal-dielectric), metal nanowires (Ag and Cu), polymers and carbon nanotubes are studied and applied in small molecule-based organic solar cells and OLEDs.


Advanced Energy Materials | 2013

Improvement of Transparent Metal Top Electrodes for Organic Solar Cells by Introducing a High Surface Energy Seed Layer

Sylvio Schubert; Jan Meiss; Lars Müller-Meskamp; Karl Leo


Advanced Functional Materials | 2012

Oxide Sandwiched Metal Thin-Film Electrodes for Long-Term Stable Organic Solar Cells

Sylvio Schubert; Martin Hermenau; Jan Meiss; Lars Müller-Meskamp; Karl Leo


Solar Energy Materials and Solar Cells | 2012

The effect of barrier performance on the lifetime of small-molecule organic solar cells

Martin Hermenau; Sylvio Schubert; Hannes Klumbies; John Fahlteich; Lars Müller-Meskamp; Karl Leo; Moritz Riede


Advanced Optical Materials | 2013

Highly Efficient Color Stable Inverted White Top‐Emitting OLEDs with Ultra‐Thin Wetting Layer Top Electrodes

Tobias Schwab; Sylvio Schubert; Simone Hofmann; Markus Fröbel; Cornelius Fuchs; Michael Thomschke; Lars Müller-Meskamp; Karl Leo; Malte C. Gather


Advanced Optical Materials | 2013

Eliminating Micro‐Cavity Effects in White Top‐Emitting OLEDs by Ultra‐Thin Metallic Top Electrodes

Tobias Schwab; Sylvio Schubert; Lars Müller-Meskamp; Karl Leo; Malte C. Gather


Advanced Functional Materials | 2014

Unusually High Optical Transmission in Ca:Ag Blend Films: High‐Performance Top Electrodes for Efficient Organic Solar Cells

Sylvio Schubert; Lars Müller-Meskamp; Karl Leo


Advanced Energy Materials | 2013

Collecting the Electrons on n‐Doped Fullerene C60 Transparent Conductors for All‐Vacuum‐Deposited Small‐Molecule Organic Solar Cells

Yong Hyun Kim; Sylvio Schubert; Ronny Timmreck; Lars Müller-Meskamp; Karl Leo

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Dive into the Sylvio Schubert's collaboration.

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Karl Leo

Canadian Institute for Advanced Research

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Lars Müller-Meskamp

Dresden University of Technology

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Jan Meiss

Dresden University of Technology

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Tobias Schwab

Dresden University of Technology

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Moritz Riede

Dresden University of Technology

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Karl Leo

Canadian Institute for Advanced Research

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Christian Uhrich

Dresden University of Technology

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Markus Fröbel

Dresden University of Technology

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Martin Pfeiffer

Dresden University of Technology

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