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Synthesis

The Synthesis Core represents the heart of polymer innovation at CPP, where fundamental chemistry meets advanced materials design. Our multidisciplinary team develops polymeric materials through state-of-the-art synthesis techniques, addressing critical challenges in sustainability, functionality, and performance. From renewable bio-based resins and sustainable polycondensates to semiconducting polymers for organic electronics and specialized electrolytes for next-generation batteries, we create molecular architectures tailored to specific application demands. Our capabilities include microwave-assisted rapid synthesis, controlled polymerization, surface functionalization, and nanoparticle synthesis. By integrating green chemistry principles with precision molecular engineering, we enable the development of high-performance materials for energy storage, electronics, composites, coatings, biomedical devices, and sustainable manufacturing processes.

 

 

Polymers for Functional Coatings

Functionalizing technical surfaces enables new properties like anti-ice, anti-fog, anti-fouling, and easy-to-clean effects. We synthesize application-specific polymers tailored to available coating methods.

Microfluidic and Hydrogels

Platform to enable fast polymer response and complex cascade reactions.

Radical Ring-Opening

Synthesis of fully biodegradable polyesters using CKAs

Organic Electronics

Conductive polymers for flexible electronics and sensors.

Sustainable Polycondensates

(Semi)conducting polymers for functional electronic components.

Mircowave Synthesis

Accelleration of organic reactions or polymerisation via microwave irradiation.

Polymer for batteries

Brief description about the core here.

Bio-based resins

Advanced polymer electrolytes for energy storage systems.

Artifical Organelles

Functional responsive polymersomes for complex synthetic organelles.

Filler Synthesis

Functional nanoparticles for enhanced polymer composites.


Contact

CPP Platform Coordinator

Ines Kühnert
49 351 4658 368