Title of article :
The effect of substrate temperature on the
microstructure and tunnelling magnetoresistance
of FeCo–Al2O3 nanogranular films
Author/Authors :
CHANGZHENG WANG?، نويسنده , , XIAOGUANG XIAO، نويسنده , , YONGHUA RONG، نويسنده , , T. Y. Hsu(Xu Zuyao)، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2006
Abstract :
A series of FeCo–Al2O3 granular films were prepared with a magnetron controlled sputtering
system. The magnetic–transport properties and microstructure of films sputtered at various
substrate temperatures were characterized by conventional four probes method, SQUID
magnetometer, analytical electron microscope and transmission electron microscope,
respectively. The results indicate that the tunnelling magnetoresistance reaches the peak value
of about 6.9% for FeCo (41 vol.%)-Al2O3 granular films sputtered at 300 K, while for FeCo
granular films sputtered at 473 K, the 6% peak value in tunnelling magnetoresistance vs.
volume fraction curve displaces toward the lower FeCo content of about 35 vol.%. Meanwhile,
FeCo (30vol.%)-Al2O3 granular films sputtered both at room temperature and at 473 K behave
as superparamagnetic and the susceptibility of this film increases with increasing substrate
temperature. Based on the feature of microstructure of FeCo (41vol.%)-Al2O3 granular films
sputtered at both room temperature and 823 K, the evolution sequence of two-stage phase
separation is suggested. In addition, the effect of the microstructure on tunnelling
magnetoresistance has been discussed. C 2006 Springer Science + Business Media, Inc.
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science