Hassel, A. W.; Rohwerder, M.: SurMat09: Lab course on Applied Surface Spectroscopy and Microscopy. Lecture: 2-tägige Blockveranstaltung im Rahmen der Max-Planck School SurMat, Ruhr-Universität Bochum, Germany, 2005-11
Rohwerder, M.: SurMat08: Surface and interface spectroscopy and microscopy. Lecture: 2-tägige Blockveranstaltung im Rahmen der Max-Planck School SurMat (Modul T2: Physical chemistry of surfaces and interfaces), Ruhr-Universität Bochum, Germany, 2005-11
Rohwerder, M.: Surface and interface spectroscopy and microscopy. Lecture: Vorlesung innerhalb der International Max-Planck-Research-School for Surface and Interface Engineering in Advanced Materials, "Korrosion", WS 2005 / 2006, MPIE, Düsseldorf, Germany, October 15, 2005
Grundmeier, G.; Stratmann, M.; Rohwerder, M.: Funktionelle Schichten auf Metallen: Vom Korrosionsschutz zum Lotus-Effekt. Lecture: Vorlesung SS 2004, Ruhr-Universität-Bochum, Fakultät für Maschinenbau, Institut für Werkstoffe, Bochum, Germany, 2004
Grundmeier, G.; Stratmann, M.; Rohwerder, M.: Funktionelle Schichten auf Metallen: Vom Korrosionsschutz zum Lotus-Effekt. Lecture: Vorlesung SS 2003, Ruhr-Uni-Bochum, Fakultät für Maschinenbau, Institut für Werkstoffe, Bochum, Germany, 2003
Grundmeier, G.; Rohwerder, M.: Lab course on surface spectroscopy and microscopy. Lecture: Vorlesung innerhalb der International Max-Planck-Research-School for Surface and Interface Engineering in Advanced Materials, WS 2005/2006, MPI für Eisenforschung GmbH, Düsseldorf, Germany
Rohwerder, M.; Grundmeier, G.; Stratmann, M.: Korrosion der Metalle. Lecture: Wahlpflichtvorlesung, Blockveranstaltung, SS 2006, Fakultät für Maschinenbau, Ruhr-Universität-Bochum, Germany
Khayatan, N.: Investigation of Key Parameters in Cathodic Delamination of Organic Coatings and Quantification of Their Role. Dissertation, Ruhr-Univesität Bochum, Fakultät Maschinenbau (2023)
Prabhakar, J. M.; Ostendorf, A.: Fundamental investigation of the cathodic delamination behaviour of model polymer coating on novel chromium-based coatings electrodeposited from a trivalent chromium-formate electrolyte. Dissertation, Ruhr-Universität Bochum, Fakultät für Maschinenbau (2022)
Ganapathi, A.; Stratmann, M.: The hydrogen electrode in the “dry”: on the effect of electrode material and relative humidity. Dissertation, Ruhr-Universität Bochum, Fakultät für Maschinenbau (2022)
Yin, Y.: Self-heating coatings based on conducting polymer for intelligent corrosion protection. Dissertation, Ruhr-Universität Bochum, Fakultät für Maschinenbau (2022)
Corrêa da Silva, C.: Investigation of the kinetics of selective oxidation of iron model alloys during simulated. Dissertation, Ruhr-Universität Bochum (2020)
Uebel, M.: Release and transport of corrosion inhibitors in self-healing coatings for intelligent corrosion protection. Dissertation, Ruhr-Universität Bochum (2019)
Merz, A.: Investigation of the “Protection Zone”, a novel mechanism to inhibit delamination of composite organic coatings containing conducting polymer. Dissertation, Ruhr-Universität Bochum (2019)
Wu, C.-H.: The Principle and Applications of Scanning Kelvin Probe based Hydrogen Detection Technique on Pd-coated and Oxide Covered Surface. Dissertation, Ruhr-Universität Bochum (2019)
Hu, Q.: A Contribution to Elucidate Interfacial Electric Double Layer Structures and Their Effects on Tribological Phenomena Using Force Microscopy. Dissertation, Fakultät für Maschinenbau der Ruhr-Universität Bochum, Bochum, Germany (2018)
Dandapani, V.: Hydrogen Permeation based Potentiometry as a New Quantification Tool for Electrochemical Reactivity at Buried Interfaces and under Nanoscopic Electrolyte Layers. Dissertation, Ruhr-Universität Bochum, Bochum, Germany (2017)
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…
This project aims to investigate the influence of grain boundaries on mechanical behavior at ultra-high strain rates and low temperatures. For this micropillar compressions on copper bi-crystals containing different grain boundaries will be performed.
Microbiologically influenced corrosion (MIC) of iron by marine sulfate reducing bacteria (SRB) is studied electrochemically and surfaces of corroded samples have been investigated in a long-term project.
In this project we investigate the hydrogen distribution and desorption behavior in an electrochemically hydrogen-charged binary Ni-Nb model alloy. The aim is to study the role of the delta phase in hydrogen embrittlement of the Ni-base alloy 718.
We plan to investigate the rate-dependent tensile properties of 2D materials such as metal thin films and PbMoO4 (PMO) films by using a combination of a novel plan-view FIB based sample lift out method and a MEMS based in situ tensile testing platform inside a TEM.
Hydrogen induced embrittlement of metals is one of the long standing unresolved problems in Materials Science. A hierarchical multiscale approach is used to investigate the underlying atomistic mechanisms.
For understanding the underlying hydrogen embrittlement mechanism in transformation-induced plasticity steels, the process of damage evolution in a model austenite/martensite dual-phase microstructure following hydrogenation was investigated through multi-scale electron channelling contrast imaging and in situ optical microscopy.
We will investigate the electrothermomechanical response of individual metallic nanowires as a function of microstructural interfaces from the growth processes. This will be accomplished using in situ SEM 4-point probe-based electrical resistivity measurements and 2-point probe-based impedance measurements, as a function of mechanical strain and…
The project aims to study corrosion, a detrimental process with an enormous impact on global economy, by combining denstiy-functional theory calculations with thermodynamic concepts.