Zhong Lin Wang, Zurong Dai, et al.
Microscopy and Microanalysis
We have produced exchange-coupled FePt nanoparticle assemblies by chemical synthesis and subsequent thermal annealing. As the interparticle distances decrease by tuning the annealing conditions, interparticle interactions change from dipolar type to exchange type, and the magnetization reversal mechanism switches from rotation controlled to domain-nucleation controlled. With increasing annealing temperature, the coercivity first increases due to improved chemical ordering, and then drops significantly, resulting from excessive interparticle exchange coupling. For the samples exhibiting exchange coupling, both the remanence ratio and coercive squareness increase. © 2002 American Institute of Physics.
Zhong Lin Wang, Zurong Dai, et al.
Microscopy and Microanalysis
J.E.E. Baglin, Shouheng Sun, et al.
MRS Proceedings 2003
Min Chen, Jaemin Kim, et al.
JACS
G.A. Held, Hao Zeng, et al.
Journal of Applied Physics