Schneider, M.; Stratmann, M.: Influence of Incorporated Copper on the Formation, Solid State Structure and Electrochemical Properties of g-FeOOH. Berichte Bunsengesellschaft Physikalische Chemie 96, 11, pp. 1731 - 1736 (1992)
Stratmann, M.: Ergebnisse des Forschungs- und Entwicklungsprogramms "Korrosion und Korrosionsschutz". Werkstoffe und Korrosion 43, pp. 258 - 261 (1992)
Stratmann, M.: Electrochemical reactions of metal surfaces, covered by thin condensed electrolyte layers. Bulletin of Electrochemistry 8, p. 30 - 30 (1992)
Stratmann, M.; Streckel, H.: Monitoring of blistering of organic coatings by a contact-free measurement. Werkstoffe und Korrosion 43, 6, pp. 316 - 320 (1992)
Stratmann, M.; Wolpers, M.; Lösch, R.; Volmer, M.: The structure and reactivity of chemically modified reactive metal surfaces. Bulletin of Electrochemistry 8, p. 8 - 8 (1992)
Volmer-Uebing, M.; Stratmann, M.: A Surface Analytical and an Electrochemical Study of Iron Surfaces Modified by Thiols. Applied Surface Science 55, 1, pp. 19 - 35 (1992)
Reynders, B.; Stratmann, M.: Adsorption of simple S-organic compounds on iron surfaces prepared in an UHV-system. Fresenius' Journal of Analytical Chemistry 341 (5-6), pp. 406 - 407 (1991)
Wolpers, M.; Stratmann, M.; Viefhaus, H.: Structure and stability of silane modified metal surfaces. Fresenius' Journal of Analytical Chemistry 341 (5-6), pp. 337 - 338 (1991)
Feser, R.; Stratmann, M.: Neue Erkenntnisse zum Korrosionsschutz von organischen Beschichtungen auf Eisen. Werkstoffe und Korrosion 42, 4, pp. 187 - 195 (1991)
Stratmann, M.; Hoffmann, K.; Müller, J.: Die Bedeutung von Rostschichten für den Ablauf von Korrosionsreaktionen bei niedrig legierten Stählen. Werkstoffe und Korrosion 42, 9, pp. 467 - 472 (1991)
Stratmann, M.; Streckel, H.; Feser, R.: A new technique able to measure directly the delamination of organic polymer films. Corrosion Science 32 (4), 4, pp. 467 - 470 (1991)
Stratmann, M.; Streckel, H.; Feser, R.: Ein neues Verfahren zur Untersuchung der Delamination von Polymerbeschichtungen. Farbe und Lack 97, pp. 9 - 13 (1991)
Stratmann, M.; Streckel, H.; Kim, K. T.; Yee, S.: The Investigation of the Corrosion Properties of Metal Surfaces Covered by thin Electrolyte Layers. La Metallurgia Italiana 83, pp. 665 - 670 (1991)
Stratmann, M.; Wolpers, M.; Streckel, H.; Feser, R.: Use of a Scanning-Kelvinprobe in the Investigation of Electrochemical Reactions at the Metal/Polymer Interface. Berichte Bunsengesellschaft Physikalische Chemie 95, 11, pp. 1365 - 1375 (1991)
Uebing-Volmer, M.; Reynders, B.; Stratmann, M.: Anbindungsverhalten organischer Monomere auf Eisenoberflächen und Korrosion der durch die Anbindung chemisch modifizierten Oberflächen. Werkstoffe und Korrosion 42 (1), pp. 19 - 34 (1991)
Wolpers, M.; Viefhaus, H.; Stratmann, M.: Surface Analytical Investigation on Metal Surfaces, Modified by LB Films of Silanes. Applied Surface Science 47, 1, pp. 49 - 62 (1991)
Yee, S.; Stratmann, M.; Oriani, R. A.: Application of Kelvin Microprobe to the Corrosion of Metals in Humid Atmospheres. Journal Electrochemical Society 138, 1, pp. 55 - 61 (1991)
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
This project will aim at addressing the specific knowledge gap of experimental data on the mechanical behavior of microscale samples at ultra-short-time scales by the development of testing platforms capable of conducting quantitative micromechanical testing under extreme strain rates upto 10000/s and beyond.
The development of pyiron started in 2011 in the CM department to foster the implementation, rapid prototyping and application of the highly advanced fully ab initio simulation techniques developed by the department. The pyiron platform bundles the different steps occurring in a typical simulation life cycle in a single software platform and…
The project focuses on development and design of workflows, which enable advanced processing and analyses of various data obtained from different field ion emission microscope techniques such as field ion microscope (FIM), atom probe tomography (APT), electronic FIM (e-FIM) and time of flight enabled FIM (tof-FIM).
Smaller is stronger” is well known in micromechanics, but the properties far from the quasi-static regime and the nominal temperatures remain unexplored. This research will bridge this gap on how materials behave under the extreme conditions of strain rate and temperature, to enhance fundamental understanding of their deformation mechanisms. The…
The prediction of materials properties with ab initio based methods is a highly successful strategy in materials science. While the working horse density functional theory (DFT) was originally designed to describe the performance of materials in the ground state, the extension of these methods to finite temperatures has seen remarkable…
The aim of the work is to develop instrumentation, methodology and protocols to extract the dynamic strength and hardness of micro-/nano- scale materials at high strain rates using an in situ nanomechanical tester capable of indentation up to constant strain rates of up to 100000 s−1.