Our paper on optimization of iron-based nanoparticles for magnetic fluid hyperthermia and human endothelial cell uptake is published in Nanoscale Advances. The remarkable cellular uptake highlights the potential for biomedical applications.
https://t.co/kWhp36b06i
Our joint paper on Life Cycle Assessment of Rare Earth Elements-Free Permanent Magnets has been published in American Chemical Society Sustainable Chemistry & Engineering: https://t.co/YgOHf20EIT
High-performance NdFeB magnets are vital for emerging green energy technologies. Our paper Grain size and coercivity tuning in NdFeB magnets prepared by high pressure hydrogen milling is online now: https://t.co/pJZ9CbeYKP
@iron_upgraded @Everyone@TUDarmstadt @JanWelzenbach @lm97303535@LeaTotzauer @vera_krewald @KrammLab @FluorianKraus @JPHofmann @etzoldlab @RoseGroup1 @hongbin_zhang @MarcLedendecker @AlffLab @HessSpectroLab Not really 'things' but nevertheless relevant :-).
1) Iron Man
2) Iron Curtain
3) Iron Maiden.
This one we did in silico! 💻🔬MD look at our fancy bottom electrode material (SrMoO3) for tunable capacitors @TUDarmstadt Molecular dynamics simulation of crystal structure and heat capacity i... https://t.co/dJ03h4Rlns
Ultrahigh coercivities, 7.18 T at room temperature, in Sm5Fe17-based magnets. Many thanks to our collaborators @NIMS_PR and @HZDR_Dresden as well as @TRR270 and @mextjapan for the financial support.
https://t.co/JvvWNWOwlz
Our creative students at @TUDarmstadt Functional Materials lab enjoying Science is fun and beautiful too! #MaterialsScience#researchTUDa Fe-Nano particles responding to a magn... https://t.co/a3BiagmsY3 via @YouTube
For more information about synthesis and properties of Fe nanoparticles produced by high-pressure hydrogen reduction, see our joint work with @molinaluna_aem : in Nanoscale Advances https://t.co/1E43WZ9VHI