Area of research
Radiation · Molecular Biology
Research interest
Research interests include Nuclear Physics and Applications, Chemical Synthesis and Analysis, Nuclear physics research studies, and Polymer Surface Interaction Studies.
Electrosynthesis of Mussel‐inspired Adhesive Polymers as a Novel Class of Transient Enzyme Stabilizers
Enhancing Adhesion Properties of Commodity Polymers through Thiol-Catechol Connectivities: A Case Study on Polymerizing Polystyrene-Telechelics via Thiol-Quinone Michael-Polyaddition
Redox‐Triggered Debonding of Mussel‐Inspired Pressure Sensitive Adhesives: Improving Efficiency Through Functional Design
Organic transformation of lignin into mussel-inspired glues: next-generation 2K adhesive for setting corals under saltwater
Tetrazine-norbornene <i>versus</i> azide-norbornene ligation: evaluating the toolbox for polymer–polymer coupling
Peptide‐based Organocatalyst on Stage: Functionalizing Mesoporous Silica by Tetrazine‐Norbornene Ligation
Statistical Copolymers that Mimic Aspects of Mussel Adhesive Proteins: Access to Robust Adhesive‐Domains for Non‐Covalent Surface PEGylation
Heavy metal on stage: Making ion-exchange resin selective by peptide tetrazine-norbornene ligation
Broadening the Chemical Space of Mussel-Inspired Polymerization: The Roll-out of a TCC-Polymer Platform with Thiol–Catechol Connectivities
Antimicrobial Finish of Polyethersulfone Membranes: Sticking Photosensitizers‐Like Marine Mussels Would Do
Accessing the Next Generation of Synthetic Mussel‐Glue Polymers via Mussel‐Inspired Polymerization
Implementing Zn<sup>2+</sup>ion and pH-value control into artificial mussel glue proteins by abstracting a His-rich domain from preCollagen
Toward Artificial Mussel‐Glue Proteins: Differentiating Sequence Modules for Adhesion and Switchable Cohesion
Combining Phage Display and Next-Generation Sequencing for Materials Sciences: A Case Study on Probing Polypropylene Surfaces
Peptide-Assisted Design of Peptoid Sequences: One Small Step in Structure and Distinct Leaps in Functions
Toward Artificial Mussel‐Glue Proteins: Differentiating Sequence Modules for Adhesion and Switchable Cohesion
Learning from Peptides to Access Functional Precision Polymer Sequences
Mussel‐Inspired Polymerization of Peptides: The Chemical Activation Route as Key to Broaden the Sequential Space of Artificial Mussel‐Glue Proteins
Tuning mechanical reinforcement and bioactivity of 3D printed ternary nanocomposites by interfacial peptide-polymer conjugates
Mussel‐Glue Inspired Adhesives: A Study on the Relevance of <scp>l</scp>‐Dopa and the Function of the Sequence at Nanomaterial‐Peptide Interfaces
Efficient Screening of Combinatorial Peptide Libraries by Spatially Ordered Beads Immobilized on Conventional Glass Slides
Fish and Clips: A Convenient Strategy to Identify Tyrosinase Substrates with Rapid Activation Behavior for Materials Science Applications
Peptide‐Assisted Design of Precision Polymer Sequences: On the Relevance of the Side‐Chain Sequences and the Variability of the Backbone
Von Peptiden lernen: eine Strategie für das Design funktionaler Präzisionspolymer‐Sequenzen
Polymerizing Like Mussels Do: Toward Synthetic Mussel Foot Proteins and Resistant Glues
Digging into the Sequential Space of Thiolactone Precision Polymers: A Combinatorial Strategy to Identify Functional Domains
Methionine<sup>329</sup> in human serum albumin: A novel target for alkylation by sulfur mustard
On the way to precision formulation additives: 2D-screening to select solubilizers with tailored host and release capabilities
Polymerizing Like Mussels Do: Toward Synthetic Mussel Foot Proteins and Resistant Glues
Precision compatibilizers for composites: in-between self-aggregation, surfaces recognition and interface stabilization