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Size-dependent scaling of exchange bias in NiFe2O4/NiO nanogranular systems synthesized by a phase separation method
Tian Zhaoming 1 * #,Huang Shuai 2
1.huazhong University of Science & Technology, WuHan 430074
2.huazhong University of Science & Technology
*Correspondence author
#Submitted by
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Funding: This work was supported by the by the Foundation from the ministry of the National Education (No.Grant No. 20090142120069)
Opened online:15 February 2013
Accepted by: none
Citation: Tian Zhaoming,Huang Shuai.Size-dependent scaling of exchange bias in NiFe2O4/NiO nanogranular systems synthesized by a phase separation method[OL]. [15 February 2013] http://en.paper.edu.cn/en_releasepaper/content/4520317
 
 
Exchange bias (EB) effect has been studied in a series of nanogranular systems of ferrimagnetic (Ferri) NiFe2O4 nanoparticles embedded into antiferromagnetic (AFM) NiO matrix, synthesized by a phase pprecipitation method from diluted Ni(1-x)FexO3 (x=0.09) oxides. For these systems, the crystalline size (DNFO) of NiFe2O4 ranging from ~3 nm to ~55 nm has been obtained with thermal treated at different temperatures from 550oC to 1000oC. Magnetization measurement shows that, both exchange bias field (HEB) and vertical magnetization shifts (MShift) can be exhibited below 250 K after field cooling procedure. The HEB and MShift decrease monotonically with crystalline size, and their behavior strongly depend on the crystalline size of NiFe2O4 nanoparticles. Linear relationship between HEB and MShift is observed for systems with smaller sizes (DNFO≤8 nm), reveals a straightforward correlation between them. This phenomenon is ascribed to the interfacial exchange coupling between Ferri NiFe2O4 clusters and spin-glass-like (SGL) phases, where the frozen uncompensated spins in SGL phases play critical role of in inducing EB effect. As DNFO is above 12 nm, the dependence of HEB on MShift deviates from the linear relationship, which is discussed in terms of the superimposed contribution from the exchange coupling between Ferri NiFe2O4 core with the SGL phase, and the exchange coupling between Ferri NiFe2O4 core and AFM NiO phases at the interfaces.
Keywords:Exchange bias; phase precipitation; uncompensated spins
 
 
 

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