Room temperature low field magnetoresistance in Sr2FeMoO6/ZnxFe1-xFe2O4 composites
被引:11
作者:
Kumar, Nitu
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机构:
Natl Phys Lab, New Delhi 110012, India
Natl Inst Technol, Dept Phys, Kurukshetra 136119, Haryana, India
Univ Puerto Rico, Speclab, San Juan, PR 00931 USANatl Phys Lab, New Delhi 110012, India
Kumar, Nitu
[1
,2
,3
]
Khurana, Geetika
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机构:
Univ Puerto Rico, Speclab, San Juan, PR 00931 USANatl Phys Lab, New Delhi 110012, India
Khurana, Geetika
[3
]
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h-index:
机构:
Gaur, Anurag
[2
]
Kotnala, R. K.
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机构:
Natl Phys Lab, New Delhi 110012, IndiaNatl Phys Lab, New Delhi 110012, India
Kotnala, R. K.
[1
]
机构:
[1] Natl Phys Lab, New Delhi 110012, India
[2] Natl Inst Technol, Dept Phys, Kurukshetra 136119, Haryana, India
[3] Univ Puerto Rico, Speclab, San Juan, PR 00931 USA
Double perovskite Sr2FeMoO6/ZnxFe1-xFe2O4 (SFMO/ZFO) composite systems with varying zinc content in nanosized zinc ferrite were synthesized. Composites have been prepared by two phase sintering process of limited intermixing of the SFMO calcined powder and ZFO nanoparticles. The structural analysis confirms the coexistence of both the phases in the composites and revealed that the agglomerated ZFO nanoparticles segregated at the grain boundaries. It was found that the inclusion of low ZFO content (2wt. %) increases the resistivity, magnetization, and low field magnetoresistance (LFMR), whereas it further decreases with increasing ZFO content. A large room-temperature tunnelling magnetoresistance (Delta rho/rho(0)) ratio 4.83% and 6.90% was observed for pristine SFMO and SFMO/ZFO (x = 0.7) composite samples respectively at low magnetic field of 2 kOe, which is 1.42 times larger than pure SFMO sample. The enhanced LFMR is highly desirable for room temperature magneto resistive applications. (C) 2013 AIP Publishing LLC.