The low coercivity of spinel ferrites is a major barrier that significantly limits their use in high density magnetic recording applications. By controlling the substituting content of Cr3+, in this article we describe how magnetic CoCr(x)Fe(2-x)O4 (0 < x < 1.2) nanoparticles with coercivity of up to 6.4 kOe were successfully obtained by the hydrothermal process. The high coercivity is attributed to the synergetic effects of magnetocrystalline anisotropy and the nanoscale size effect. X-ray diffraction analysis confirmed the spinel structure of the nanoparticles with transmission electron microscopy (TEM) suggesting regular tetragonal morphology. The TEM indicated an edge length ranging from 15 nm to 150 nm, which increases monotonically with increasing Cr content. Raman analyses supported the proposed model on the formation mechanism of the nanoparticles, i.e. heterogeneous and homogeneous nucleation.
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King Abdulaziz Univ, Phys Dept, Fac Sci, Jeddah, Saudi Arabia
Zagazig Univ, Phys Dept, Fac Sci, Zagazig, EgyptKing Abdulaziz Univ, Phys Dept, Fac Sci, Jeddah, Saudi Arabia
Mansour, S. F.
Dawood, Ali
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Zagazig Univ, Phys Dept, Fac Sci, Zagazig, EgyptKing Abdulaziz Univ, Phys Dept, Fac Sci, Jeddah, Saudi Arabia
Dawood, Ali
Abdo, M. A.
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Zagazig Univ, Phys Dept, Fac Sci, Zagazig, EgyptKing Abdulaziz Univ, Phys Dept, Fac Sci, Jeddah, Saudi Arabia
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Univ Belgrade, Fac Agr, Nemanjina 6, Belgrade, Serbia
Jozef Stefan Inst, Jamova ul 39, Ljubljana 1000, SloveniaUniv Belgrade, Inst Chem Technol & Met, Dept Chem, Njegoseva 12, Belgrade, Serbia
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NCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
Maksoud, M. I. A. Abdel
El-Sayyad, Gharieb S.
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NCRRT, Drug Radiat Res Dept, Drug Microbiol Lab, Atom Energy Author, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
El-Sayyad, Gharieb S.
Ashour, A. H.
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NCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
Ashour, A. H.
El-Batal, Ahmed I.
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NCRRT, Drug Radiat Res Dept, Drug Microbiol Lab, Atom Energy Author, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
El-Batal, Ahmed I.
Elsayed, Mohamed A.
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Mil Tech Coll, Egyptian Armed Forces, Chem Engn Dept, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
Elsayed, Mohamed A.
Gobara, Mohamed
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Mil Tech Coll, Egyptian Armed Forces, Chem Engn Dept, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
Gobara, Mohamed
El-Khawaga, Ahmed M.
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Mil Tech Coll, Egyptian Armed Forces, Chem Engn Dept, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
El-Khawaga, Ahmed M.
Abdel-Khalek, E. K.
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Al Azhar Univ, Fac Sci, Boys Branch, Phys Dept, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt
Abdel-Khalek, E. K.
El-Okr, M. M.
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Al Azhar Univ, Fac Sci, Boys Branch, Phys Dept, Cairo, EgyptNCRRT, Radiat Phys Dept, Mat Sci Lab, Atom Energy Author, Cairo, Egypt