Verwey-Type Transition and Magnetic Properties of the LiMn2O4Spinels
β Scribed by Y. Shimakawa; T. Numata; J. Tabuchi
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 289 KB
- Volume
- 131
- Category
- Article
- ISSN
- 0022-4596
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β¦ Synopsis
The transport and magnetic properties of stoichiometric and Li-rich LiMn 2 O 4 spinels are investigated. Clear anomalies, which are associated with a structural phase transition from cubic to tetragonal, are observed in the temperature dependence of resistivity and susceptibility in the stoichiometric sample. The sharp increase in resistivity with decreasing temperature suggests a transition similar to the Verwey transition seen in the Fe 3 O 4 spinel. Electrical conduction above the transition temperature is well described by a hopping model with an activation energy of about 0.16 eV. Effective paramagnetic moments obtained from Curie constants yield information on the average ionic valence of Mn. The average ionic valences of Mn increase in the Li-rich samples, suggesting that the excess Li ions substitute on the Mn site. A superexchange magnetic interaction between the Mn ions via oxygen atoms is also discussed. The magnetic interaction in a 90°°arrangement of Mn-O-Mn changes from antiferromagnetic to ferromagnetic with increasing Mn 4Ψ /Mn 3Ψ ratio.
π SIMILAR VOLUMES
XRD measurements proved the coexistence of spinel, lithiumrich spinel, and rock-salt phases in the Li-Mn-O system. An investigation of the electrical properties, carried out on polycrystalline samples, shows that Li 2 MnO 3 has insulating behavior while the spinel phases provide an example of hoppin
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packed structures was further extended by Goodenough's group to 3-D materials with the spinel structure (3). It was Lithium manganospinels belonging to the LiMn 2 O 4 -Li 2 Mn 4 O 9 -Li 4 Mn 5 O 12 system were prepared by solid-state reac-shown that lithium could be intercalated into the spinels tio