Erbe, A.: Correspondence Regarding the Article “On the Nature of the Evanescent Wave” (Appl. Spectrosc. 2013. 67[2]: 126-130). How “total” is Total Reflection from Powdered Samples? Applied Spectroscopy 67 (6), pp. 699 - 701 (2013)
Jha, D. K.; Shameem, M.; Patel, A. B.; Kostka, A.; Schneider, P.; Erbe, A.; Deb, P.: Simple synthesis of superparamagnetic magnetite nanoparticles as highly efficient contrast agent. Materials Letters 95, pp. 186 - 189 (2013)
Koelsch, P.; Muglali, M. I.; Rohwerder, M.; Erbe, A.: Third-order effects in resonant sum-frequency-generation signals at electrified metal/liquid interfaces. Journal of the Optical Society of America B-Optical Physics 30 (1), pp. 219 - 223 (2013)
Schneider, P.; Sigel, R.; Lange, M. M.; Beier, F.; Renner, F. U.; Erbe, A.: Activation and fluoride-assisted phosphating of aluminium silicon coated steel. ACS Applied Materials and Interfaces 5 (10), pp. 4224 - 4232 (2013)
Khan, T. R.; Vimalanandan, A.; Marlow, F.; Erbe, A.; Rohwerder, M.: Existence of a lower critical radius for incorporation of silica particles into zinc during electro-codeposition. ACS Applied Materials and Interfaces 4 (11), pp. 6221 - 6227 (2012)
Chen, Y.; Schneider, P.; Erbe, A.: Investigation of native oxide growth on zinc in different atmospheres by spectroscopic ellipsometry. Physica Status Solidi A-Applications and Materials Science 209, pp. 846 - 853 (2012)
Gogoi, M.; Deb, P.; Vasan, G.; Keil, P.; Kostka, A.; Erbe, A.: Direct monophasic replacement of fatty acid by DMSA on SPION surface. Applied Surface Science 258, pp. 9685 - 9691 (2012)
Vasan, G.; Erbe, A.: Incidence angle dependence of enhancement factor in attenuated total reflection surface enhanced infrared absorption spectroscopy studied by numerical solution of the vectorial Maxwell equations. Physical Chemistry Chemical Physics 14, pp. 14702 - 14709 (2012)
Reithmeier, M.; Erbe, A.: Application of thin-film interference coatings in infrared reflection spectroscopy of organic samples in contact with thin metal films. Applied Optics 50 (9), pp. C301 - C308 (2011)
Vasan, G.; Chen, Y.; Erbe, A.: Computation of surface-enhanced infrared absorption spectra of particles at a surface through the Finite Element Method. Journal of Physical Chemistry 115 (7), pp. 3025 - 3033 (2011)
Chen, Y.; Hassel, A. W.; Erbe, A.: Enhancement of the electrocatalytic activity of gold nanoparticles towards methanol oxidation. Electrocatalysis 2 (2), pp. 106 - 113 (2011)
Khan, T. R.; Erbe, A.; Auinger, M.; Marlow, F.; Rohwerder, M.: Electrodeposition of zinc-silica composite coatings: Challenges in incorporating functionalized silica particles into a zinc matrix. Science and Technology of Advanced Materials 12 (5), 055005 (2011)
Hamou, F. R.; Biedermann, P. U.; Erbe, A.; Rohwerder, M.: Numerical simulation of probing the electric double layer by scanning electrochemical potential microscopy. Electrochimica Acta 55 (18), pp. 5210 - 5222 (2010)
Reithmeier, M.; Erbe, A.: Dielectric interlayers increasing the transparency of metal films for mid-infrared attenuated total reflection spectroscopy. Physical Chemistry Chemical Physics 12, pp. 14798 - 14803 (2010)
Jevremović, I.; Chen, Y.-H.; Altin, A.; Erbe, A.: Mechanisms of Inhibitor Action: Passivation and Self-Healing. In: Corrosion Inhibitors in the Oil and Gas Industries, Vol. Part 2, (Chapter 15), pp. 359 - 382 (Eds. Saji, V. S.; Umoren, S. A.). Wiley-VCH, Weinheim, Germany (2020)
The aim of the current study is to investigate electrochemical corrosion mechanisms by examining the metal-liquid nanointerfaces. To achieve this, corrosive fluids will be strategically trapped within metal structures using novel additive micro fabrication techniques. Subsequently, the nanointerfaces will be analyzed using cryo-atom probe…
In this project we pursue recent developments in the field of austenitic steels with up to 18% reduced mass density. The alloys are based on the Fe-Mn-Al-C system.
Magnetic properties of magnetocaloric materials is of utmost importance for their functional applications. In this project, we study the magnetic properties of different materials with the final goal to discover new magnetocaloric materials more suited for practical applications.
In this project, we work on the use of a combinatorial experimental approach to design advanced multicomponent multi-functional alloys with rapid alloy prototyping. We use rapid alloy prototyping to investigate five multicomponent Invar alloys with 5 at.% addition of Al, Cr, Cu, Mn and Si to a super Invar alloy (Fe63Ni32Co5; at.%), respectively…
The aim of the Additive micromanufacturing (AMMicro) project is to fabricate advanced multimaterial/multiphase MEMS devices with superior impact-resistance and self-damage sensing mechanisms.
In this project we study a new strategy for the theory-guided bottom up design of beta-Ti alloys for biomedical applications using a quantum mechanical approach in conjunction with experiments. Parameter-free density functional theory calculations are used to provide theoretical guidance in selecting and optimizing Ti-based alloys...
Local lattice distortion is one of the core effects in complex concentrated alloys (CCAs). It has been expected that the strength CCAs can be improved by inducing larger local lattice distortions. In collaboration with experimentalists, we demonstrated that VCoNi has larger local lattice distortions and indeed has much better strength than the…
Laser Powder Bed Fusion (LPBF) is the most commonly used Additive Manufacturing processes. One of its biggest advantages it offers is to exploit its inherent specific process characteristics, namely the decoupling the solidification rate from the parts´volume, for novel materials with superior physical and mechanical properties. One prominet…