
Publications of Oliver Gutfleisch
All genres
Journal Article (13)
1.
Journal Article
297, 121353 (2025)
Effect of Ag nano-additivation on microstructure formation in Nd-Fe-B magnets built by laser powder bed fusion. Acta Materialia 2.
Journal Article
37 (27), 2419037 (2025)
Superhigh Magnetostriction in Non-Equilibrium Grown Fe-Ga Single-Crystals by Rapid-Directional-Solidification. Advanced Materials 3.
Journal Article
259, 116537 (2025)
Understanding high coercivity in ThMn12-type Sm–Zr–Fe–Co–Ti permanent magnet powders through nanoscale analysis. Scripta Materialia 4.
Journal Article
283, 120532 (2025)
Functional recycling of grain boundary diffusion processed Nd–Fe–B sintered magnets. Acta Materialia 5.
Journal Article
11 (46), 2407972 (2024)
Boosting Coercivity of 3D Printed Hard Magnets through Nano-Modification of the Powder Feedstock. Advanced Science 6.
Journal Article
15 (1), 10119 (2024)
Two-gigapascal-strong ductile soft magnets. Nature Communications 7.
Journal Article
10, pp. 1127 - 1140 (2024)
Green Ironmaking at Higher H2 Pressure: Reduction Kinetics and Microstructure Formation During Hydrogen-Based Direct Reduction of Hematite Pellets. Journal of Sustainable Metallurgy 8.
Journal Article
7, 124411 (2023)
Location and morphology of ferromagnetic precipitates in Ni–Mn–Sn. Physical Review Materials 9.
Journal Article
29 (5), pp. 1658 - 1670 (2023)
A Machine Learning Framework for Quantifying Chemical Segregation and Microstructural Features in Atom Probe Tomography Data. Microscopy and Microanalysis 10.
Journal Article
608, pp. 310 - 316 (2022)
A mechanically strong and ductile soft magnet with extremely low coercivity. Nature 11.
Journal Article
33 (37), 2102139 (2021)
Ultrastrong and Ductile Soft Magnetic High-Entropy Alloys via Coherent Ordered Nanoprecipitates. Advanced Materials 12.
Journal Article
33 (5), 2006853 (2021)
Magnetoelectric Tuning of Pinning‐Type Permanent Magnets through Atomic‐Scale Engineering of Grain Boundaries. Advanced Materials 13.
Journal Article
4 (5), 054404 (2020)
Grain boundary segregation, phase formation, and their influence on the coercivity of rapidly solidified SmFe11Ti hard magnetic alloys. Physical Review Materials