Rohwerder, M.; de Weldige, K.; Stratmann, M.: Potential dependence of the kinetics of thiol self-organization on Au(111). Journal of Solid State Electrochemistry 2 (2), pp. 88 - 93 (1998)
Vago, E. R.; de Weldige, K.; Rohwerder, M.; Stratmann, M.: Electroreduction of oxygen on octadecylmercaptan self-assembled monolayers. Fresenius' Journal of Analytical Chemistry 353 (3-4), pp. 316 - 319 (1995)
Rohwerder, M.; de Weldige, K.; Stratmann, M.: Study of the self assembly of alkanethiols on gold under control of the electrode potential. In Abstracts of Papers of the American Chemical Society, 214 (2), pp. 348 - PHYS. (1997)
Rohwerder, M.; de Weldige, K.; Stratmann, M.: On the influence of the electrode potential on growth and stability of thiol monolayer films: Scanning tunneling microscopic and electrochemical investigations. 3rd Indo-German Symposium on modern methods in electrochemistry, Bangalore, India (1996)
Rohwerder, M.; de Weldige, K.; Stratmann, M.: Zum Einfluß des Elektrodenpotentials auf Wachstum und Zerstörung von Thiolfilmen. Bunsentagung, Jena, Germany (1996)
Rohwerder, M.; de Weldige, K.; Stratmann, M.: The influence of the electrode potential on the self-assembly of decanethiol on the Au(111) surface. 188th Meeting of the ECS, Chicago, IL, USA (1995)
Rohwerder, M.; de Weldige, K.; Viefhaus, H.; Stratmann, M.: Adsorption selbst-organisierter Mercaptan-Monolagen auf Gold. Workshop on Development and Industrial Application of Scanning Probe Microscopes SXM1, Münster, Germany (1994)
Max Planck scientists design a process that merges metal extraction, alloying and processing into one single, eco-friendly step. Their results are now published in the journal Nature.
Scientists of the Max-Planck-Institut für Eisenforschung pioneer new machine learning model for corrosion-resistant alloy design. Their results are now published in the journal Science Advances
Hydrogen in aluminium can cause embrittlement and critical failure. However, the behaviour of hydrogen in aluminium was not yet understood. Scientists at the Max-Planck-Institut für Eisenforschung were able to locate hydrogen inside aluminium’s microstructure and designed strategies to trap the hydrogen atoms inside the microstructure. This can…