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Featured researches published by Uwe Gleißner.


Light Manipulating Organic Materials and Devices III : Proceedings of SPIE Optics and Photonics, San Diego, CA, August 28 - September 1, 2016. Ed.: J. E. Haley | 2016

Development and characterization of adjustable refractive index scattering epoxy acrylate polymer layers

Thomas Eiselt; Jan B. Preinfalk; Uwe Gleißner; Uli Lemmer; Thomas Hanemann

This work presents different polymer diffusing films for optical components. In optical applications it is sometimes important to have a film with an adjusted refractive index, scattering properties and a low surface roughness. These diffusing films can be used to increase the efficiency of optical components like organic light emitting diodes (OLEDs). In this study three different epoxy acrylate mixtures containing Syntholux 291 EA, bisphenol a glycerolate dimethacrylate, Sartomer SR 348 L are characterized and optimized with different additives. The adjustable refractive index of the material is achieved with a chemical doping by 9-vinylcarbazole. Titanium nanoparticles in the mixtures generate light scattering and increase the refractive index additionally. To prevent sedimentation and agglomeration of these nanoparticles, a stabilization agent [2-(2-methoxyethoxy)ethoxy]acetic acid is added to the mixture. Other ingredients are a UV-starter and thermal starter for the radical polymerization. A high power stirrer (ultraturrax) is used to mix and disperse all chemical substances together to a homogenous mixture. The viscosity behavior of the mixtures is an important property for the selection of the production method and gets characterized. After the mixing, the monomer mixture is applied on glass substrates by blade coating or screen printing. To initiate the chain growing (polymerization) the produced films are irradiated for 10 minutes long with UV light (UV LED Spot Hönle, 405 nm). After this step a final post bake from the layers in the oven (150°C, 30 min.) is operated. Light transmission measurements (UV-Vis) of the polymer matrix and roughness measurements complement the characterization.


Optical Engineering | 2014

Tailoring the optical and rheological properties of an epoxy acrylate based host-guest system

Uwe Gleißner; Thomas Hanemann


Sensors and Actuators A-physical | 2016

Optically and rheologically tailored polymers for applications in integrated optics

Uwe Gleißner; Bilal Khatri; Christof Megnin; Stanislav Sherman; Yanfen Xiao; Meike Hofmann; Axel Günther; Maik Rahlves; Bernhard Roth; Hans Zappe; Thomas Hanemann


Procedia Technology | 2014

Tuning the Optical and Rheological Properties of Host-guest Systems based on an Epoxy Acrylate and MMA

Uwe Gleißner; Kirsten Honnef; Thomas Hanemann


Procedia Engineering | 2015

Polymers with Customizable Optical and Rheological Properties for Printable Single-mode Waveguides☆

Uwe Gleißner; Stanislav Sherman; Christof Megnin; Hans Zappe; Thomas Hanemann


Journal of Applied Polymer Science | 2014

Polymer-based route to ferroelectric lead strontium titanate thin films

Manuel Benkler; Jost Hobmaier; Uwe Gleißner; Anna Medesi; Daniel Hertkorn; Thomas Hanemann


Polymers for Advanced Technologies | 2017

Refractive index increase of acrylate-based polymers by adding soluble aromatic guest-molecules: Refractive index increase of acrylate-based polymers

Uwe Gleißner; Sebastian Bonaus; Christof Megnin; Thomas Hanemann


Journal of Materials Science | 2015

Morphology and oxygen vacancy investigation of strontium titanate-based photo electrochemical cells

Daniel Hertkorn; Manuel Benkler; Uwe Gleißner; F. Büker; Christof Megnin; Claas Müller; Thomas Hanemann; Holger Reinecke


MikroSystemTechnik Kongress 2017. MEMS, Mikroelektronik, Systeme, München, 23.-25.10.2017. Hrsg.: C. Kutter | 2017

Polymer-ceramic-composites for 3D inkjet printing

Dennis Graf; Ana Bermejo; Luis Martinez; Uwe Gleißner; Christof Megnin; Thomas Eiselt; Markus Mauck; Thomas Hanemann


Polymers for Advanced Technologies | 2016

The influence of photo initiators on refractive index and glass transition temperature of optically and rheologically adjusted acrylate based polymers

Uwe Gleißner; Thomas Hanemann; Christof Megnin; Felicia Wieland

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Thomas Hanemann

Karlsruhe Institute of Technology

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Thomas Eiselt

Karlsruhe Institute of Technology

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Hans Zappe

University of Freiburg

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Anna Medesi

University of Freiburg

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