Hassel, A. W.; Diesing, D.: Breakdown of ultrathin anodic valve metal oxide films in metal-insulator-metal-contacts compared with metal-insulator-electrolyte contacts. Thin Solid Films 414, pp. 296 - 303 (2002)
Hassel, A. W.; Diesing, D.: Trapping of transient processes in aluminium oxide thin films in a voltage pulse experiment. Electrochemistry Communications 4, pp. 1 - 4 (2002)
Hassel, A. W.; van der Kloet, J.; Schmidt, W.; Stratmann, M.: In-situ SKP Investigation and ToF-SIMS Analysis of Filiform Corrosion on Aluminium Alloy 2024-T3. Proceed. Japan Soc. CoRR. Engineer. Mater. Environments 48, pp. 61 - 69 (2001)
Mozalev, A.; Poznyak, A.; Mozaleva, I.; Hassel, A. W.: The voltage-time behaviour for porous anodizing of aluminium in a fluoride-containing oxalic acid electrolyte. Electrochem. Commun. 3, pp. 299 - 305 (2001)
Seo, M.; Aihara, M.; Hassel, A. W.: Cathodic Decomposition and Anodic Dissolution and Changes in Surface Morphology of n-type InP in HCl. J. Electrochem. Soc. 148, pp. B400 - B404 (2001)
Seo, M.; Aihara, M.; Hassel, A. W.: Cathodic Decomposition and Changes in Surface Morphology of InP in HCl. Electrochem. Soc. Proc. PV 00-25, pp. 576 - 585 (2000)
Diesing, D.; Hassel, A. W.; Lohrengel, M. M.: Aluminium Oxide Tunnel Junctions: Influence of Preparation Technique, Sample Geometry and Oxide Thickness. Thin Solid Films 342, pp. 282 - 290 (1999)
Hassel, A. W.; Seo, M.: Localised Investigation of Coarse Grain Gold with the Scanning Droplet Cell and by the Laue Method. Electrochim. Acta 44, pp. 3769 - 3777 (1999)
Hassel, A. W.; Lohrengel, M. M.: The Scanning Droplet Cell and its Application to Structured Nanometer Oxide Films on Aluminium. Electrochimica Acta 42, pp. 3327 - 3333 (1997)
Hassel, A. W.; Lohrengel, M. M.; Schultze, J. W.: Ultradünne Aluminiumoxidschichten: Untersuchung elektronischer und ionischer Transportprozesse. Metalloberfläche 50, pp. 19 - 22 (1996)
Hassel, A. W.; Lohrengel, M. M.; Schultze, J. W.: Ultradünne Aluminiumoxidschichten: Untersuchung elektronischer und ionischer Transportprozesse. Metalloberfläche 50, pp. 19 - 22 (1996)
Hassel, A. W.; Lohrengel, M. M.: Preparation and Properties of Ultra Thin Anodic Valve Metal Oxide Films. Materials Science Forum 185-188, pp. 581 - 590 (1995)
Hassel, A. W.; Lohrengel, M. M.; Rüße, S.; Schultze, J. W.: On the Mechanism of Ion Transport in Thin (1-100 nm) Oxide Films on Aluminum and Tantalum. Bulletin of the Chemists and Technologists of Macedonia 13, pp. 49 - 54 (1994)
Hassel, A. W.; Bonk, S.; Wicinski, M.; Stratmann, M.; Ogle, K.; Philips-Falcey, N.; Ostwald, C.; Janssen, S.; Stellnberger, K.-H.; Konrath, P.: Passive/active transistions in cyclic corrosion tests. Office for Official Publications of the European Communities, Luxembourg, Luxembourg (2007)
Water electrolysis has the potential to become the major technology for the production of the high amount of green hydrogen that is necessary for its widespread application in a decarbonized economy. The bottleneck of this electrochemical reaction is the anodic partial reaction, the oxygen evolution reaction (OER), which is sluggish and hence…
This project targets to exploit or develop new methodologies to not only visualize the 3D morphology but also measure chemical distribution of as-synthesized nanostructures using atom probe tomography.
The group aims at unraveling the inner workings of ion batteries, with a focus on probing the microstructural and interfacial character of electrodes and electrolytes that control ionic transport and insertion into the electrode.
The full potential of energy materials can only be exploited if the interplay between mechanics and chemistry at the interfaces is well known. This leads to more sustainable and efficient energy solutions.
In order to develop more efficient catalysts for energy conversion, the relationship between the surface composition of MXene-based electrode materials and its behavior has to be understood in operando. Our group will demonstrate how APT combined with scanning photoemission electron microscopy can advance the understanding of complex relationships…
To advance the understanding of how degradation proceeds, we use the latest developments in cryo-atom probe tomography, supported by transmission-electron microscopy. The results showcase how advances in microscopy & microanalysis help bring novel insights into the ever-evolving microstructures of active materials to support the design of better…