2014
DOI: 10.1007/s10853-014-8444-4
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Transport, magnetic and structural properties of Mott insulator MnV2O4 at the boundary between localized and itinerant electron limit

Abstract: The effect of Zn and Cr doping on the transport and magnetic properties of MnV 2 O 4 have been investigated using resistivity, thermoelectric power (TEP), magnetization, neutron diffraction and X-ray diffraction techniques. It is observed, that with increase in Zn substitution the noncollinear orientation of Mn spins with the V spins decreases which effectively leads to the decrease of structural transition temperature more rapidly than Curie temperature. Investigations also show that with Zn doping both the C… Show more

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Cited by 4 publications
(10 citation statements)
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“…Therefore, the moment of the V sub-lattice also decreases with increasing Li content and increases for Cr content. It is important to compare these with the earlier studies on Zn x Mn 1-x V 2 O 4 [23] and Co 1-x Zn x V 2 O 4 [22] because Zn(0.74Å) is also a non magnetic ion.…”
Section: Resultsmentioning
confidence: 94%
See 2 more Smart Citations
“…Therefore, the moment of the V sub-lattice also decreases with increasing Li content and increases for Cr content. It is important to compare these with the earlier studies on Zn x Mn 1-x V 2 O 4 [23] and Co 1-x Zn x V 2 O 4 [22] because Zn(0.74Å) is also a non magnetic ion.…”
Section: Resultsmentioning
confidence: 94%
“…As a result, the magnetic transition is suppressed. 23 Figure 5 shows the temperature dependent electrical polarization for the FeV Li doping the coupling between V-V decreases due to the presence of V 3+ and V 4+ at the octahedral site but Cr 5% doping has no effect on V-V coupling which in effect does not change the onset temperature.…”
Section: Resultsmentioning
confidence: 99%
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“…The combined effect of spin, lattice and orbital degrees of freedom in spinel vanadates AV 2 O 4 (A = Cd, Mn, Mg, Zn) has generated significant interest in the study of these [1][2][3][4][5]. In this spinel structure octahedral V sites form a frustrated pyrochlore lattice in which V 3+ are located at vertices of a network of corner sharing tetrahedra.…”
Section: Introductionmentioning
confidence: 99%
“…MnV 2 O 4 develops a collinear ferrimagnetic ordering at T N = 56 K, where the magnetic moments of Mn and V align in oppo site directions [3]. At slightly lower temperatures, a struc tural phase trans ition characteristic of AV 2 O 4 systems from a cubic to a tetragonal phase takes place at T S = 53 K, with the spin structure of the V 3+ ions becoming now noncollinear [3][4][5]. The structural transition at 53 K arising from orbital ordering [2,9] is of first order in nature [10] and is found to be influenced by magnetic field [9][10][11] indicating a close correlation between the orbital, spin, and chemical structure in this compound.…”
Section: Introductionmentioning
confidence: 99%