Auinger, M.; Rohwerder, M.: Connecting Thermochemical Reactions and Diffusion - The Formation of Grain Boundary Oxides in Steel Sheets. 18th Conference on Computer Methods in Materials Technology, Zakopane, Poland (2011)
Evers, S.; Borodin, S.; Auinger, M.; Rohwerder, M.: Understanding of Hydrogen in Steel by Scanning Kelvin Probe measurements on evaporated Pd-Films. 7th International Conference on Diffusion in Solids and Liquids (DSL 2011), Algarve, Portugal (2011)
Muglali, M. I.; Bashir, A.; Rohwerder, M.: A study on oxygen reduction inhibition at pyridine-terminated self assembled monolayer modified Au(111) electrodes. Workshop on Engineering of Functional Interfaces, Hasselt Univ, Campus Diepenbeek, Diepenbeek, Belgium (2011)
Salgin, B.; Rohwerder, M.: Mobility of Water and Charge Carriers in Polymer/Oxide/Aluminium Alloy Interphases. M2i Conference 2010, Noordwijkerhout, The Netherlands (2010)
Auinger, M.; Rohwerder, M.: Grain Boundary Oxidation Processes and High Temperature Corrosion. Division of Materials and Manufacturing Science, Osaka University, Osaka, Japan (2010)
Salgin, B.; Rohwerder, M.: Mobility of Water and Charge Carriers in Polymer/Oxide/Aluminium Alloy Interphases. M2i/DPI Project Meeting, Eindhoven, The Netherlands (2010)
Keil, P.; Salgin, B.; Vogel, D.; Rohwerder, M.: Applications of the Kelvin Probe: From ion mobilty to x-ray/sample interaction. Institute for X-Ray Physics, University of Göttingen, Göttingen, Germany (2010)
Auinger, M.; Borodin, S.; Evers, S.; Rohwerder, M.: Thermodynamic Studies of Hydrogen Permeation and the Effect of Oxide Formation in Pure Iron Samples. 6th International Conference on Diffusion in Solids and Liquids, Paris, France (2010)
Auinger, M.; Rohwerder, M.: Grain Boundary Oxidation Processes and High Temperature Corrosion. GTT-Workshop on Thermodynamic Simulations in Industry, Herzogenrath, Aachen, Germany (2010)
Auinger, M.; Borodin, S.; Swaminathan, S.; Rohwerder, M.: Thermodynamic Simulations of the Oxidation Processes in Polycrystalline Metallic Alloys. International Workshop “Grain boundary diffusion, stresses and segregation”, Moscow, Russia (2010)
Salgin, B.; Rohwerder, M.: Mobility of Water and Charge Carriers in Polymer/Oxide/Aluminium Alloy Interphases. M2i Cluster6 (Durability) Meeting, Velsen-Noord, The Netherlands (2010)
Hamou, R. F.; Biedermann, P. U.; Erbe, A.; Rohwerder, M.: Numerical Investigation of Electrode Surface Potential Mapping with Scanning Electrochemical Potential Microscopy. The 12th International Scanning Probe Microscopy Conference, Sapporo, Japan (2010)
Rohwerder, M.: Application of Conducting Polymers for the Corrosion Protection of Iron and Zinc. Advances in Corrosion Science for Lifetime Prediction and Sustainability: ISE 8th Spring Meeting, Columbus, Ohio, USA (2010)
Bashir, A.; Muglali, M. I.; Hamou, R. F.; Rohwerder, M.: SECPM Study: Influence of the Tip Material and Its Coating on the Accuracy of Potential Profiling Across Electrical Double Layer at Solid/Liquid Interface. 217th ECS Meeting, Vancouver, Canada (2010)
Hamou, R. F.; Biedermann, P. U.; Erbe, A.; Rohwerder, M.: Numerical simulation of probing the electric double layer by scanning electrochemical Potential microscopy. 217th ECS Meeting, Vancouver, Canada (2010)
Rohwerder, M.: Self-assembled monolayers in corrosion research. Chemisches Kolloquium, Institut für Anorganische und Analytische Chemie, Johann Wolfgang Goethe-Universität, Frankfurt a. M., Germany (2010)
Wissenschaftler am Max-Planck-Institut für Nachhaltige Materialien haben ein CO2-freies und energiesparendes Verfahren entwickelt, um Nickel für Batterien, Magnete und Edelstahl zu gewinnen.
Max-Planck-Wissenschaftler kombinieren die Gewinnung, Herstellung, Mischung und Verarbeitung von Metallen und Legierungen in einem einzigen, umweltfreundlichen Schritt. Ihre Ergebnisse sind jetzt in der Zeitschrift Nature veröffentlicht.
Neues Video von Dr. Rasa Changizi erklärt wie sich Wasserstoff in Metallen verhält und an welchen Methoden das MPIE forscht, um Risiken durch Wasserstoffversprödung zu umgehen.
Neues Video erklärt wie Ammoniak die Speicherung und den Transport von Wasserstoff erleichtert und zur Produktion von grünem Stahl verwendet werden kann