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Max Planck Institute of Colloids and Interfaces
As an institute where basic research is conducted at the highest level, we are addressing the major societal challenges.
About Max Planck Institute of Colloids and Interfaces
The research and control of very small or very thin structures in the nano- and micrometer regime is our goal. These tiny structures determine the properties of materials and bio-systems. A deeper understanding is the key to many innovations, such as "intelligent" biomaterials. Also on the energy production of the future, the avoidance of CO2 emissions and the development of vaccines is being researched here. Current research topics are polymeric films, membranes, microcapsules, organic and inorganic nano- structures, biomineralization as well as chemistry and biology of carbohydrates. Biomimetic research is at the core of the Institute’s activity. Common goal is to learn from nature how to build hierarchical materials or active systems with new functionalities, with adaptive, self-healing or self-assembling properties. The institute consists of four research departments, each with a director: Biomaterials (Professor Peter Fratzl) Biomolecular Systems (Professor Peter Seeberger) Colloid Chemistry (Professor Markus Antonietti) Sustainable and Bio-inspired Materials (Professor Silvia Vignolini)
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Signals from Max Planck Institute of Colloids and Interfaces
6 published signals
People
Max Planck Institute of Colloids and Interfaces is offering an open PhD position for Functional Materials Design with a focus on self-correcting self-assembly of DNA-coated colloids for photonic materials.
Reported by Max Planck Institute of Colloids and Interfaces
Presence & Recognition
Max Planck Institute of Colloids and Interfaces welcomed Prof. Gerd Schröder-Turk from Murdoch University in Perth to the institute.
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Research & Knowledge
Max Planck Institute of Colloids and Interfaces published a new review by Agustín Mangiarotti and Rumiana Dimova from the Sustainable and Bio-inspired Materials Department exploring how membranes influence the formation and properties of biomolecular condensates.
Reported by Max Planck Institute of Colloids and Interfaces