S.L.acknowledges funding from the Engineering and Physics Research Council(EP/R009147/1);from the Leverhulme Trust(RPG-2021-139).
Three-dimensional(3D)nanostructured functional materials are important systems allowing new means for intricate control of electromagnetic properties.A key problem is realising a 3D printing methodology on the nanosca...
In this study, we followed the biodegradation of ultra-small superparamagnetic iron oxide nanoparticles injected intravenously at clinical doses in mice. An advanced fitting procedure for magnetic susceptibility curve...
S. R. thanks the financial support from the U.S. National Science Foundation (NSF) (No. NSF-DMR-1551948) (magnetically hard nanocrystals) and (No. NSF- CMMI-1553986) (nanomanufacturing).
Ternary FeCoNi metallic nanostructures have attracted significant attention due to their high saturation magnetization, unique mechanical properties, and large corrosion resistance. In this study, we report a controll...
The work at Utah is supported by DOE;the work at IOP is supported by NSFC;the work at UoW is supported by the Australian Research Council(ARC)Discovery grant;Liu also acknowledges support by an ARC international professorial fellowship and Dr.X.L.Wang for helping to prepare the figures.First principles calculations were performed on computers at DOE-NERSC and CHPC of University of Utah.
Based on the underlying graphene lattice symmetry and an itinerant magnetism model on a bipartite lattice,we propose a unifi ed geometric rule for designing graphene-based magnetic nanostructures:spins are parallel(fe...