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Mossbauer studies of nanosize Mn1-xZnxFe2O4

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dc.contributor.author Upadhyay, C.
dc.contributor.author Verma, H.C.
dc.contributor.author Rath, C.
dc.contributor.author Sahu, K.K.
dc.contributor.author Anand, S.
dc.contributor.author Das, R.P.
dc.contributor.author Mishra, N.C.
dc.date.accessioned 2018-10-01T12:21:52Z
dc.date.available 2018-10-01T12:21:52Z
dc.date.issued 2001
dc.identifier.citation Journal Of Alloys And Compounds, 326(1-2), 2001: 94-97
dc.identifier.issn 0925-8388
dc.identifier.uri http://ore.immt.res.in/handle/2018/943
dc.description.abstract Nanosized mixed ferrite Mn1-xZnFe2O4 (x = 0.0, 0.35, 0.5, 0.65, 1) has been prepared by hydrothermal route at pH 9 and 210 degreesC and studied by X-ray diffraction, magnetization measurement and Mossbauer spectroscopy. The size of the particles decreases gradually as the zinc concentration is increased. The cation distribution has been found to strongly depend on the process parameters. On annealing the system the cation distribution changes from a metastable state to a stable state which enhances the superparamagnetism. ZnFe2O4 with average particle size of 4 nm. shows magnetic ordering even at room temperature. (C) 2001 Elsevier Science BY All rights reserved.
dc.language en
dc.publisher Elsevier
dc.relation.isbasedon International Conference on Magnetic Materials (ICMM)., Calcutta, India; OCT 17-19, 2000
dc.relation.isreferencedby SCI
dc.rights Copyright [2001]. All efforts have been made to respect the copyright to the best of our knowledge. Inadvertent omissions, if brought to our notice, stand for correction and withdrawal of document from this repository.
dc.subject Chemical Sciences
dc.subject Materials Sciences
dc.subject Materials Sciences
dc.subject Materials Sciences
dc.title Mossbauer studies of nanosize Mn1-xZnxFe2O4
dc.type Journal Article
dc.affiliation.author IIT Kanpur, Kanpur-208016, Uttar Pradesh, India


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