Prof. Dr. Andreas Bund
Fachgebietsleiter
Prof. Dr. rer. nat. habil. Dr. h.c. Andreas Bund
Arrheniusbau, R. 210
Tel.: +49 3677 69-3107
Fax: +49 3677 69-3104
TU Ilmenau/ R. Böttcher; S. MaiTechnische Universität Ilmenau
Fakultät für Elektrotechnik und Informationstechnik
Fachgebiet Elektrochemie und Galvanotechnik
Postfach 10 05 65
98684 Ilmenau
Das Fachgebiet "Elektrochemie und Galvanotechnik" bietet den deutschlandweit einmaligen Masterstudiengang Elektrochemie und Galvanotechnik (Master of Science, M. Sc.) an.
Alle Unterlagen zu den Lehrveranstaltungen sowie Hinweise oder aktuelle Informationen finden Sie unter:
Prof. Dr. rer. nat. habil. Dr. h.c. Andreas Bund
Kontakt:
Fachgebiet Elektrochemie und Galvanotechnik
Gustav-Kirchhoff-Strasse 6
Raum A210 (Arrheniusbau)
98693 Ilmenau
+49 3677 69-3107
Fax +49 3677 69-3104
Andreas.Bund(at)tu-ilmenau.de
Frau Annalena Möller
Kontakt:
Fachgebiet Elektrochemie und Galvanotechnik
Gustav-Kirchhoff-Strasse 6
Raum A209 (Arrheniusbau)
98693 Ilmenau
+49 3677 69-3102*
Fax +49 3677 69-3104
eFax +49 3677 69-93104
fgecg@tu-ilmenau.de
(* nur Vormittags)
Determination of phosphorus content from the electrogravimetric response of NiP layers during galvanostatic anodic polarization, Michael Witt et al., Journal of Electroanalytical Chemistry (2025)
"A strategy to phosgene production from CO2 and HCl: why using an organic electrolyte as electrochemical medium for CO2 Electro-reduction", Fengxia Shen et al., Ionics (2025)
"Graphene-Stabilized δ-MnO2 Cathode for High-Capacity Aqueous Aluminum-Ion Batteries", A. Abdi et al., Processes 13 (2025), 3551
"Application of the Hull Cell for Identifying Electropolishing Parameters to Adjust Surface Morphology in Additive Manufacturing", L. Esper et al., ECS Advances (2025)
"Optimization of in situ hydrothermal synthesis of birnessite MnO2/graphene composite: thermodynamic insights and enhanced electrochemical performance for Li‑ion battery anodes", Azadeh Abdi et al., J Mater Sci: Mater Electron (2025) 36:1750
"Reactive Nanoparticle Composed Bilayers: An Alternate Route Toward the Production of Pt/Al Nanofoils", Nishchay A. Isaac et al., Small 2025, e01263
"Comparing the SEI Formation on Copper and Amorphous Carbon: A Study with Combined Operando Methods", M. Stich et al., Batteries 2025 11(7), 273
"Performance Improvement of Anode-Free Lithium-Metal Batteries by In Situ Design of the Initial Solid Electrolyte Interphase Using Localized High-Concentration Sulfolane Electrolyte", I. Genov et al., ChemElectroChem (2025) e202500102
"Combining Operando Techniques for an Accurate Depiction of the SEI Formation in Lithium-Ion Batteries", M. Stich et al., Batteries 2025, 11(4), 117
"Residual stress of annealed electroless and electrodeposited nickel phosphorous layers incorporated with amorphous boron particles", Nurul Amanina Binti Omar et al., J Mater. Sci: Mater Eng. (2025) 20:40
"Study on reaction mechanism of CO2 electro-reduction to CO in organic medium: Revealed by experimental and spectroscopic Investigations", Fengxia Shen et al., Applied Surface Science Volume 681, 1 February 2025, 161459