Mukherjee, T.; Breitbach, B.; Meneghetti, M.; Rabe, M.: Raman hydration shell spectroscopy can be applied to study solvation shells of nanomaterials. 17th International conference on materials chemistry (MC17), Edinburgh, Scotland, UK (2025)
Mukherjee, T.: Applying Raman Solvation Shell Spectroscopy to Study Water Surrounding Nanoparticles. RESOLV Klausurtagung, Marienfeld (Harsewinkel), Germany (2025)
Mukherjee, T.; Rabe, M.: Solvation Shell Water around Citrate-stabilised Gold Nanoparticle. Bunsen-Tagung 2024 - 123rd Annual Conference of the German Bunsen Society for Physical Chemistry
, Aachen, Germany (2024)
International researcher team presents a novel microstructure design strategy for lean medium-manganese steels with optimized properties in the journal Science
In this project we work on correlative atomic structural and compositional investigations on Co and CoNi-based superalloys as a part of SFB/Transregio 103 project “Superalloy Single Crystals”. The task is to image the boron segregation at grain boundaries in the Co-9Al-9W-0.005B alloy.
The aim of the work is to develop instrumentation, methodology and protocols to extract the dynamic strength and hardness of micro-/nano- scale materials at high strain rates using an in situ nanomechanical tester capable of indentation up to constant strain rates of up to 100000 s−1.
This project deals with the phase quantification by nanoindentation and electron back scattered diffraction (EBSD), as well as a detailed analysis of the micromechanical compression behaviour, to understand deformation processes within an industrial produced complex bainitic microstructure.
Within this project, we will use a green laser beam source based selective melting to fabricate full dense copper architectures. The focus will be on identifying the process parameter-microstructure-mechanical property relationships in 3-dimensional copper lattice architectures, under both quasi-static and dynamic loading conditions.