PUSilox_Eng
Versuchsaufbau mit eine durchstimmbaren Laser, im Moment mit roter Emission

PUSilox_Eng

New transparent polyurethan-siloxane hybrid polymeres

Graphen - PUSilox - New transparent polyurethan-siloxane hybrid polymeres for embedding UV LEDs and sensors

 

Titel:

New transparent polyurethan-siloxane hybrid polymeres for embedding UV LEDs and sensors

 

 

Short form:

PUSilox

 

Abstract:

The aim of the present project is to develop new multifunctional polyurethane-silicone hybrid polymers for the encapsulation of optical and optoelectronic systems with high optical transparency as well as high UV and temperature stability, good mechanical properties, high flexibility and/or an adjustable refractive index as well as optimal processing properties. With this development, state-of-the-art optical components and systems of optoelectronics are to be better protected against moisture, temperature fluctuations, chemical and mechanical stress and environmental influences. The unique selling point is to develop these properties for potting and dam materials of UV/VIS LEDs and sensors for the requirements of highest integration densities of electronic and photonic components.
The material syntheses and modifications are carried out on the basis of an existing basic technology at resintec GmbH in the field of synthesis of potting compounds, coating and embedding of electronics and electrotechnical components. The analyses, process development and testing of the new materials with regard to the required parameters are carried out at TH Wildau.
The interests of the project partner resintec are based on the fact that the field of optical technologies and overall polymer-based photonics is and will remain an exceptionally fast-growing market..

 

Staff:

Dr.-Ing. Joachim Bauer, Birgit Dietzel, Dr.-Ing. Friedhelm Heinrich, Dr. Vesela Stoycheva

 

Term:

01.10.2022 – 31.3.2024

 

Project Number/Sign :

16KN074933

 

Funds:

219.839 €

 

Partner:

resintec GmbH

 

External Source/Support programme:

Bundesministerium für Wirtschaft und Engergie

 

External Source:

Bund | BMWi |   Netzwerkprojekt "Graphen"  ZIM Kooperationsprojekt

 

Project Executing Organisation:

VDI/VDE Innovation + Technik GmbH

 

Contact:

Dr.-Ing. Joachim Bauer

Dr.-Ing. Joachim Max Bauer Dr.-Ing. Joachim Max Bauer

Tel.: +49 3375 508 496
Mobile: +491725348951
Email: joachim_max.bauer@th-wildau.de
Web: www.th-wildau.de/photonik
House 13, Room A213

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