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Synthesis and Magnetic Properties of the Intercalation Compound FePS3(CoCp2)0.40 |
LIN Jun1;DAI Yao-Dong2;HE Yun1; HUANG Hong-Bo1;XIAO Fan1;XIA Yuan-Fu1 |
1Department of Physics, Nanjing University, Nanjing 210093
2College of Material Science and Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016 |
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Cite this article: |
LIN Jun, DAI Yao-Dong, HE Yun et al 2004 Chin. Phys. Lett. 21 386-388 |
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Abstract Intercalation compound FePS3(CoCp2)0.40 (CoCp2 = cobaltocene) was synthesized, and the crystal structure and magnetic properties were studied by x-ray diffraction, magnetic susceptibility measurement, and Mössbauer spectroscopy. The crystal structure was indexed to monoclinic unit cell with a = 5.996Å, b = 10.106Å c = 12.511Å, β = 105.916°, and about 5.6Å expansion at the c direction compared to pure FePS3. The Mössbauer spectra indicate that there are three kinds of divalent irons with high spin state in the intercalation compound, which implies that charge transfer from guest to the Fe-S e*g anti-bonding orbits of host lattice. No cationic vacancies are formed in the intercalation compound. The ferromagnetism at low temperature originates from the spin canting of divalent irons.
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Keywords:
75.50.Dd
82.80.Ej
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Published: 01 February 2004
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PACS: |
75.50.Dd
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(Nonmetallic ferromagnetic materials)
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82.80.Ej
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(X-ray, M?ssbauer, and other γ-ray spectroscopic analysis methods)
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