S. Seraphin et al., Magnetization of carbon-coated ferromagnetic nanoclusters determined by electron holography, J MATER RES, 14(7), 1999, pp. 2861-2870
The magnetic properties of carbon-coated Co and Ni nanoparticles aligned in
chains were determined using transmission electron holography. The measure
ments of the phase change of the electron wave due to the magnetization of
the sample were performed. The ratio of remnant magnetization to bulk satur
ation magnetization M-r/M-s of Co decreased from 53% to 16% and of Ni decre
ased from 70% to 30% as the particle diameter increased from 25 to 90 nm. I
t was evident that the inhomogenous magnetic configurations could diminish
the stray field of the particles. After being exposed to a 2-Tesla external
magnetic field, the M-r/M-s of Co increased by 45% from the original value
s with the same dependency on the particle size. The M-r/M-s of Ni particle
s, on the other hand, increased only 10%. The increased magnetization could
be attributed to the merging of small domains into larger ones after the e
xposure to the external magnetic field. The validity of the interpretation
of the holograms was established by simulation.