Uhlig, K.; Börner, H. G.; Wischerhoff, E.; Lutz, J.-F.; Jaeger, M. S.; Laschewsky, A.; Duschl, C.: On the interaction of adherent cells with thermoresponsive polymer coatings. Polymers 6 (4), pp. 1164 - 1177 (2014)
Börner, H. G.; Kühnle, H.; Hentschel, J.: Making “smart polymers” smarter: modern concepts to regulate functions in polymer science. Journal of Polymer Science, Part A: Polymer Chemistry 48 (1), pp. 1 - 14 (2010)
Diez, I.; Hahn, H.; Ikkala, O.; Börner, H. G.; Ras, R. H. A.: Controlled growth of silver nanoparticle arrays guided by a self-assembled polymer-peptide conjugate. Soft Matter 6 (14), pp. 3160 - 3162 (2010)
Hirsch, A. K. H.; Diederich, F.; Antonietti, M.; Börner, H. G.: Bioconjugates to specifically render inhibitors water-soluble. Soft Matter 6 (1), pp. 88 - 91 (2010)
Verch, A.; Hahn, H.; Krause, E.; Cölfen, H.; Börner, H. G.: A modular approach towards functional decoration of peptide-polymer nanotapes. Chemical Communications 46 (47), pp. 8938 - 8940 (2010)
Börner, H. G.: Strategies exploiting functions and self-assembly properties of bioconjugates for polymer and materials sciences. Progress in Polymer Science 34 (9), pp. 811 - 851 (2009)
Börner, H. G.: Bioconjugates of polymers and sequence-defined peptides by reversible addition fragmentation chain transfer radical polymerization. ACS Symposium Series 1024, pp. 265 - 278 (2009)
Gallyamov, M. O.; Tartsch, B.; Potemkin, I. I.; Börner, H. G.; Matyjaszewski, K.; Khokhlov, A. R.; Möller, M.: Individual bottle brush molecules in dense 2D layers restoring high degree of extension after collapse-decollapse cycle: directly measured scaling exponent. European Physical Journal E 29 (1), pp. 73 - 85 (2009)
Kühnle, H.; Börner, H. G.: Biotransformation on polymer-peptide conjugates: a versatile tool to trigger microstructure formation. Angewandte Chemie International Edition 48 (35), pp. 6431 - 6434 (2009)
Rocha, S.; Cardoso, I.; Börner, H.; Pereira, M. C.; Saraiva, M. J.; Coelho, M.: Design and biological activity of β-sheet breaker peptide conjugates. Biochemical and Biophysical Research Communications 380 (2), pp. 397 - 401 (2009)
Schillinger, E. K.; Mena-Osteritz, E.; Hentschel, J.; Börner, H. G.; Bäuerle, P.: Oligothiophene versus beta-sheet peptide: synthesis and self-assembly of an organic semiconductor-peptide hybrid. Advanced Materials 21 (16), pp. 1562 - 1567 (2009)
Prof. Peter Fratzl, Director of our Biomaterials Department, will contribute his expertise in the science and engineering of biological materials to help inform decision-making and science policy in Germany.
Materials can temporarily change shape when a force is applied (elastic deformation) and scientists analyze a slight color change in the ligh reflected under a laser beam. Dr. Shahrouz Amini can now capture elasticity in real time and in 3D with an inverted nanoindenter – like a tiny diamond pencil tip that applies stress to a sample. The invention enables the design of tailor-made materials for applications ranging from microelectronics to prosthetic implants.
Team has investigated how the natural properties of native tree bark can be used to create a standardized product for long-term use without the addition of adhesives. They have created bark panels by peeling and drying via hot pressing, which could be used in interior design or furniture and packaging, e.g., through industrial production.
Prof. Dr. Peter Fratzl has been appointed honorary life member by the Chinese Chemical Society (CCS). The CCS describes this nomination as "the highest honor bestowed on the world's most distinguished chemists and materials scientists".
Researchers discovered strong adhesive properties of white-berry mistletoe. Its flexible fibers adhere to both skin and cartilage as well as to various synthetic materials and could find application in many fields, such as wound sealant in biomedicine.
Researchers have discovered new properties of collagen: During the intercalation of minerals in collagen fibers, a contraction tension is generated that is hundreds of times stronger than muscle strength.
On February 3, the virtual inauguration of the first Max Planck Center on the Australian continent will take place. At the MPQC, project teams will explore biological materials known as extracellular matrices.