Biedermann, P. U.; Nayak, S.; Erbe, A.: Catching intermediates of the oxygen reduction reaction in situ: Insights from electrochemical ATIR-IR and DFT. 112th Bunsentagung (Annual German Conference on Physical Chemistry), Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany (2013)
Chen, Y.; Erbe, A.: Probing interfacial layer thickness and electronic properties of electrochemical interfaces: The example of oxide on zinc. 112th Bunsentagung (Annual German Conference on Physical Chemistry), Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany (2013)
Nayak, S.; Chia-Fu, C.; Erbe, A.: ATR-IR spectroscopic study of H2O and D2O in one-dimensional confinement. 112th Bunsentagung (Annual German Conference on Physical Chemistry), Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany (2013)
Biedermann, P. U.; Nayak, S.; Erbe, A.: Towards Understanding the Mechanism of the Electrochemical Oxygen Reduction: DFT Modeling and Spectroelectrochemical Validation. Pacific Rim Meeting on Electrochemical and Solid-State Science PRIME 2012 / ECS 222, Honolulu, HI, USA (2012)
Chen, Y.; Schneider, P.; Erbe, A.: Investigation of electrochemical oxide growth on zinc by spectroscopic ellipsometry: An example of in operando spectroscopy. EMNT 2012 - 9th International Symposium on Electrochemical Micro & Nanosystem Technologies, Linz, Austria (2012)
Wu, X.; Erbe, A.; Fabritius, H.; Raabe, D.: Biological D-surface Structure: A Lesson from Nature on Photonic Crystals Design. 10th International Symposium on Photonic and Electromagnetic Crystal Structures(PECS-X), Santa Fe, NM, USA (2012)
Erbe, A.: Native and electrochemically grown oxides on metals: The dark side of semiconductor research. Seminar Talk at NTH School for Contacts in Nanosystems Spring Workshop 2012, Goslar, Germany (2012)
Erbe, A.: Oberflächendesign für empfindliche ATR-Spektroskopie in Modellexperimenten zum Verständnis der Korrosion. Bruker Optik Anwendertreffen, Ettlingen, Germany (2011)
Erbe, A.: Oberflächendesign für empfindliche ATR-Spektroskopie in Modellexperimenten zum Verständnis der Korrosion. Bruker Optik Anwendertreffen, Ettlingen, Germany (2011)
Wu, X.; Erbe, A.; Fabritius, H.; Raabe, D.: The three-dimensional photonic crystal in scales of the weevil Entimus imperialis: A natural D-surface bicontinuous structure. Geometry of Interfaces, Primošten, Croatia (2011)
Wu, X.; Erbe, A.; Fabritius, H. O.; Raabe, D.: Structure/function relations of a diamond-based photonic crystal structure in scales of the weevil Entimus imperialis (Curculionidae). Euromat 2011, Montpellier, France (2011)
Chen, Y.; Schneider, P.; Erbe, A.: In-situ ellipsometric monitoring of electrochemical preparation of ZnO nanoplates. 62nd Annual Meeting of the International Society of Electrochemistry, Niigata, Japan (2011)
Nayak, S.; Biedermann, P. U.; Stratmann, M.; Erbe, A.: In situ Electrochemical ATR-IR Investigation of the Oxygen Reduction on Germanium. 62nd Annual Meeting of the International Society of Electrochemistry, Niigata, Japan (2011)
Erbe, A.: Optical surface design for sensitive internal reflection infrared spectroscopy and applications to electrochemical questions. Seminar, Université de Fribourg, Department of Physics, Fribourg, Switzerland (2011)
Wu, X.; Erbe, A.; Fabritius, H. O.; Raabe, D.: Structure and function of the biological photonic crystals in the scales of a beetle. European Materials Research Society E-MRS Spring Meeting 2011, May 2011, Nice, France (2011)
Erbe, A.: Thin amorphous oxides and intermediates in chemical reactions: Challenging problems in interface science probed with photons. Mini-Workshop on Surface Science for Inauguration of the Turkish Surface Science Society, Ankara, Turkey (2011)
Erbe, A.: From electrochemistry to colloidal interfaces - optical answers to chemical questions. Seminar, Bilkent University, Department of Chemistry, Ankara, Turkey, (2011)
Erbe, A.: Optical design of interfaces for internal reflection infrared-spectroscopic experiments. Seminar, Karlsruhe Institute of Technology, Institute of Toxicology and Genetics. Karlsruhe, Germany (2011)
Max Planck scientists design a process that merges metal extraction, alloying and processing into one single, eco-friendly step. Their results are now published in the journal Nature.
Scientists of the Max-Planck-Institut für Eisenforschung pioneer new machine learning model for corrosion-resistant alloy design. Their results are now published in the journal Science Advances
In this project we developed a phase-field model capable of describing multi-component and multi-sublattice ordered phases, by directly incorporating the compound energy CALPHAD formalism based on chemical potentials. We investigated the complex compositional pathway for the formation of the η-phase in Al-Zn-Mg-Cu alloys during commercial…
The project HyWay aims to promote the design of advanced materials that maintain outstanding mechanical properties while mitigating the impact of hydrogen by developing flexible, efficient tools for multiscale material modelling and characterization. These efficient material assessment suites integrate data-driven approaches, advanced…
A novel design with independent tip and sample heating is developed to characterize materials at high temperatures. This design is realized by modifying a displacement controlled room temperature micro straining rig with addition of two miniature hot stages.
Many important phenomena occurring in polycrystalline materials under large plastic strain, like microstructure, deformation localization and in-grain texture evolution can be predicted by high-resolution modeling of crystals. Unfortunately, the simulation mesh gets distorted during the deformation because of the heterogeneity of the plastic…
Here, we aim to develop machine-learning enhanced atom probe tomography approaches to reveal chemical short/long-range order (S/LRO) in a series of metallic materials.
While Density Functional Theory (DFT) is in principle exact, the exchange functional remains unknown, which limits the accuracy of DFT simulation. Still, in addition to the accuracy of the exchange functional, the quality of material properties calculated with DFT is also restricted by the choice of finite bases sets.