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Featured researches published by Thomas Gegenhuber.


Journal of Materials Chemistry B | 2017

Spatially resolved photochemical coding of reversibly anchored cysteine-rich domains

Thomas Gegenhuber; Doris Abt; Alexander Welle; Suat Özbek; Anja S. Goldmann; Christopher Barner-Kowollik

We present a novel methodology to generate recodable surfaces using cysteine-rich domains (CRD) via a combination of photolithography and reversible covalently peptide-driven disulfide formation. Therefore, two 21mer CRD peptide derivatives were synthesized, one bearing an electron deficient fumarate group for immobilization via nitrile imine-ene mediated cycloaddition (NITEC) to a tetrazole-functional surface. Secondly, a bromine moiety is introduced to the CRD for analytic labelling purposes to detect surface encoding. The photolithography is conducted by selectively passivating the surface with a polyethylene glycol (PEG)-fumarate via NITEC using a photomask in a dotted pattern. Consecutively, the CRD-fumarate is immobilized via NITEC adjacent to the PEG-functional areas to the unaffected tetrazole covered surface layer. Subsequently, the CRD-bromide is covalently linked to the CRD-fumarate by forming disulfide bonds under mild reoxidative conditions in a buffer solution. The CRD-bromide is released from the surface upon reduction to recover the prior state of the surface without the bromine marker. The analysis of the CRD precursors is based on electrospray ionization mass spectrometry (ESI-MS). The surface analytics were carried out via time-of-flight secondary ion mass spectrometry (ToF-SIMS), unambiguously verifying the successful immobilization as well as coding and decoding of the CRD-bromide on the surface based on dynamically reversible disulfide bond formation.


ACS Macro Letters | 2017

Self-reporting fluorescent step-growth RAFT polymers based on nitrile imine-mediated tetrazole-ene cycloaddition chemistry

Diego Estupiñán; Thomas Gegenhuber; James P. Blinco; Christopher Barner-Kowollik; Leonie Barner


Macromolecules | 2017

Fusing Light-Induced Step-Growth Processes with RAFT Chemistry for Segmented Copolymer Synthesis: A Synergetic Experimental and Kinetic Modeling Study

Thomas Gegenhuber; Lies De Keer; Anja S. Goldmann; Paul Van Steenberge; Jan O. Mueller; Marie-Françoise Reyniers; Jan P. Menzel; Dagmar R. D’hooge; Christopher Barner-Kowollik


UNESCO/IUPAC Workshop & Conference on Macromolecules and Materials (UNESCO/IUPAC CMM) | 2017

Step-growth polymers as macro chain transfer agents - an experimental and theoretical study

Thomas Gegenhuber; Lies De Keer; Anja S. Goldmann; Paul Van Steenberge; Marie-Françoise Reyniers; Dagmar D'hooge; Christopher Barner-Kowollik


The European Polymer Federation Congress 2017 (EPF Lyon 2017) | 2017

New perspectives for step-growth polymerization : light driven step-growth fused with chain extension via RAFT polymerization

Lies De Keer; Thomas Gegenhuber; Paul Van Steenberge; Anja S. Goldmann; Marie-Françoise Reyniers; Dagmar D'hooge; Christopher Barner-Kowollik


School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty | 2017

A facile route to segmented copolymers by fusing ambient temperature step-growth and RAFT polymerization

Thomas Gegenhuber; Alexander Schenzel; Anja S. Goldmann; Per B. Zetterlund; Christopher Barner-Kowollik


School of Chemistry, Physics & Mechanical Engineering; Institute for Future Environments; Science & Engineering Faculty | 2017

Fusing light-induced step-growth processes with RAFT chemistry for segmented copolymer synthesis: A synergetic experimental and kinetic modeling study

Thomas Gegenhuber; L. De Keer; Anja S. Goldmann; P.H.M. Van Steenberge; Jan O. Mueller; Marie-Françoise Reyniers; Jan P. Menzel; Dagmar D'hooge; Christopher Barner-Kowollik


Annual Meeting of the Belgium Polymer Group 2017 (BPG 2017) | 2017

A kinetic understanding of the combination of light-driven step-growth and RAFT polymerization

Lies De Keer; Thomas Gegenhuber; Paul Van Steenberge; Anja S. Goldmann; Marie-Françoise Reyniers; Christopher Barner-Kowollik; Dagmar D'hooge


67th Canadian Chemical Engineering Conference (csche 2017) | 2017

Model-based design of reaction conditions for segmented copolymer synthesis by combining step : and chain-growth polymerization

Thomas Gegenhuber; Lies De Keer; Paul Van Steenberge; Anja S. Goldmann; Marie-Françoise Reyniers; Christopher Barner-Kowollik; Dagmar D'hooge

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Christopher Barner-Kowollik

Queensland University of Technology

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Anja S. Goldmann

Karlsruhe Institute of Technology

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Jan O. Mueller

Karlsruhe Institute of Technology

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Jan P. Menzel

Queensland University of Technology

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Alexander Schenzel

Karlsruhe Institute of Technology

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Alexander Welle

Karlsruhe Institute of Technology

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