Zheludkevich, M. L.; Serra, R.; Grundmeier, G.; Yang, L. H.; Ferreira, M. G. S.: Barrier properties of polyurethane coil coatings treated by microwave plasma polymerization. Surface and Coatings Technology 200 (12-13), pp. 4040 - 4049 (2006)
Wapner, K.; Grundmeier, G.: Spectroscopic analysis of the interface chemistry of ultra-thin plasma polymer films on iron. Surface and Coatings Technology 200 (1-4), pp. 100 - 103 (2005)
Raacke, J.; Giza, M.; Grundmeier, G.: Combination of FTIR reflection absorption spectroscopy and work function measurement for in-situ studies of plasma modification of polymer and metal surfaces. Surface and Coatings Technology 200 (1-4), pp. 280 - 283 (2005)
Carpentier, J.; Grundmeier, G.: Chemical structure and morphology of thin bilayer and composite organosilicon and fluorocarbon microwave plasma polymer films. Surface and Coatings Technology 192 (2-3), pp. 189 - 198 (2005)
Grundmeier, G.; Stratmann, M.: Adhesion and De-adhesion mechanisms at polymer/metal interfaces: Mechanistic understanding based on in situ studies of buried interfaces. Annual Review of Materials Research 35, pp. 571 - 615 (2005)
Wapner, K.; Grundmeier, G.: Application of the Scanning Kelvin Probe for the Study of the Corrosion Resistance of Interfacial Thin Silicon Organic Films at Adhesive/Metal Interfaces. Silicon Chemistry 2 (5-6), pp. 235 - 245 (2005)
Wapner, K.; Schoenberger, B.; Stratmann, M.; Grundmeier, G.: Height-regulating scanning Kelvin probe for simultaneous measurement of surface topology and electrode potentials at buried polymer/metal interfaces. Journal of the Electrochemical Society 152 (3), pp. E114 - E122 (2005)
Wapner, K.; Schönberger, B.; Stratmann, M.; Grundmeier, G.: Applications of a new height regulated Scanning Kelvin Probe in Adhesion and Corrosion Science. Journal of the Electrochemical Society 152 (3), pp. E114 - E122 (2005)
Wapner, K.; Grundmeier, G.: Spatially resolved measurements of the diffusion of water in a model adhesive/silicon lap joint using FTIR-transmission-microscopy. International Journal of Adhesion and Adhesives 24 (3), pp. 193 - 200 (2004)
Barranco, V.; Carpentier, J.; Grundmeier, G.: Correlation of morphology and barrier properties of thin microwave plasma polymer films on metal substrate. Electrochimica Acta 49 (12), pp. 1999 - 2013 (2004)
Barranco, V.; Thiemann, P.; Yasuda, H. K.; Stratmann, M.; Grundmeier, G.: Spectroscopic and electrochemical characterisation of thin cathodic plasma polymer films on iron. Applied Surface Science 229 (1-4), pp. 87 - 96 (2004)
Grundmeier, G.; Thiemann, P.; Carpentier, J.; Shirtcliffe, N.; Stratmann, M.: Tailoring of the morphology and chemical composition of thin organosilane microwave plasma polymer layers on metal substrates. Thin Solid Films 446 (1), pp. 61 - 71 (2004)
Shirtcliffe, N. J.; Stratmann, M.; Grundmeier, G.: In situ infrared spectroscopic studies of ultrathin inorganic film growth on zinc in non-polymerizing cold plasmas. Surf Interface Anal 35, 10, pp. 799 - 804 (2003)
The wide tunability of the fundamental electronic bandgap by size control is a key attribute of semiconductor nanocrystals, enabling applications spanning from biomedical imaging to optoelectronic devices. At finite temperature, exciton-phonon interactions are shown to exhibit a strong impact on this fundamental property.
Oxides find broad applications as catalysts or in electronic components, however are generally brittle materials where dislocations are difficult to activate in the covalent rigid lattice. Here, the link between plasticity and fracture is critical for wide-scale application of functional oxide materials.
In this project we study - together with the department of Prof. Neugebauer and Dr. Sandlöbes at RWTH Aachen - the underlying mechanisms that are responsible for the improved room-temperature ductility in Mg–Y alloys compared to pure Mg.
Efficient harvesting of sunlight and (photo-)electrochemical conversion into solar fuels is an emerging energy technology with enormous promise. Such emerging technologies depend critically on materials systems, in which the integration of dissimilar components and the internal interfaces that arise between them determine the functionality.
Enabling a ‘hydrogen economy’ requires developing fuel cells satisfying economic constraints, reasonable operating costs and long-term stability. The fuel cell is an electrochemical device that converts chemical energy into electricity by recombining water from H2 and O2, allowing to generate environmentally-friendly power for e.g. cars or houses…
The project Hydrogen Embrittlement Protection Coating (HEPCO) addresses the critical aspects of hydrogen permeation and embrittlement by developing novel strategies for coating and characterizing hydrogen permeation barrier layers for valves and pumps used for hydrogen storage and transport applications.
In this project, we work on a generic solution to design advanced high-entropy alloys (HEAs) with enhanced magnetic properties. By overturning the concept of stabilizing solid solutions in HEAs, we propose to render the massive solid solutions metastable and trigger spinodal decomposition. The motivation for starting from the HEA for this approach…