简介概要

Structure and magnetic properties of new compounds CdYFeWO7

来源期刊:Journal of Rare Earths2009年第6期

论文作者:吕敏峰 武志坚 孟健

文章页码:1008 - 1012

摘    要:The solid solutions of CdYFeWO7,which are cubic pyrochlores of the type A2B2O7,have been prepared and their structures were determined using Ab initio method.Rietveld refinement of the powder XRD data showed that CdYFeWO7 adopted cubic(Fd-3m) structure,while oxides crystallized in a defect-pyrochlore structure where both O(48f) and O’(8b) sites were partially occupied,and the frustrated cations sublattice precluded long range ordering of Fe/W in the pyrochlore structure.Charge distribution analysis also suggested incomplete occupation of different oxygen sites,thus the compound was non-stoichiometric,with the formula CdYFeW0.982O6.94.Magnetic measurements were carried out to find that Fe ions were in the high spin trivalent state.Curie Weiss paramagnetism down to~5 K and the characteristic superposition between FC and ZFC suggested spin liquid rather than spin glass state.

详情信息展示

Structure and magnetic properties of new compounds CdYFeWO7

吕敏峰,武志坚,孟健

State Key Laboratory of Application of Rare Earth Resources,Changchun Institute of Applied Chemistry,Chinese Academy of Sciences

摘 要:The solid solutions of CdYFeWO7,which are cubic pyrochlores of the type A2B2O7,have been prepared and their structures were determined using Ab initio method.Rietveld refinement of the powder XRD data showed that CdYFeWO7 adopted cubic(Fd-3m) structure,while oxides crystallized in a defect-pyrochlore structure where both O(48f) and O’(8b) sites were partially occupied,and the frustrated cations sublattice precluded long range ordering of Fe/W in the pyrochlore structure.Charge distribution analysis also suggested incomplete occupation of different oxygen sites,thus the compound was non-stoichiometric,with the formula CdYFeW0.982O6.94.Magnetic measurements were carried out to find that Fe ions were in the high spin trivalent state.Curie Weiss paramagnetism down to~5 K and the characteristic superposition between FC and ZFC suggested spin liquid rather than spin glass state.

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