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Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb6Cl18 and MRENb6Cl18 (RE = rare-Earth; M = monovalent cation)

Identifieur interne : 002722 ( Istex/Corpus ); précédent : 002721; suivant : 002723

Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb6Cl18 and MRENb6Cl18 (RE = rare-Earth; M = monovalent cation)

Auteurs : S. Ihmaïne ; C. Perrin ; O. Pe A ; M. Sergent

Source :

RBID : ISTEX:B08DEE3E8EDE5CA6D151DE42B2F48B76F0E94CDB

English descriptors

Abstract

Abstract: Magnetic susceptibility of recently isolated ternary and quaternary niobium chlorides containing rare-earth atoms are presented (RENb6Cl18, MRENb6Cl18; M = monovalent, RE = rare earth). These phases contain |Nb6Cl18|n- units and crystallize in the R3̄ space group, except for the CsRENb6Cl18 compounds which crystallize in hexagonal P3̄1c. These |Nb6Cl18|n- units may present a magnetic behaviour corresponding to one unpaired electron per Nb6 cluster (n = 3,15 e7minus;/Nb6), or may be nonmagnetic (n = 4, 16e−/Nb6). The magnetic state of both clusters and rare-earth atoms were studied on single crystals and powders. Interesting features are seen such as: magnetic interactions, Van Vleck susceptibility, mixed valences and magnetic anisotropy.

Url:
DOI: 10.1016/0921-4526(90)90286-4

Links to Exploration step

ISTEX:B08DEE3E8EDE5CA6D151DE42B2F48B76F0E94CDB

Le document en format XML

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<div type="abstract" xml:lang="en">Abstract: Magnetic susceptibility of recently isolated ternary and quaternary niobium chlorides containing rare-earth atoms are presented (RENb6Cl18, MRENb6Cl18; M = monovalent, RE = rare earth). These phases contain |Nb6Cl18|n- units and crystallize in the R3̄ space group, except for the CsRENb6Cl18 compounds which crystallize in hexagonal P3̄1c. These |Nb6Cl18|n- units may present a magnetic behaviour corresponding to one unpaired electron per Nb6 cluster (n = 3,15 e7minus;/Nb6), or may be nonmagnetic (n = 4, 16e−/Nb6). The magnetic state of both clusters and rare-earth atoms were studied on single crystals and powders. Interesting features are seen such as: magnetic interactions, Van Vleck susceptibility, mixed valences and magnetic anisotropy.</div>
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<ce:title>Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb
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<ce:simple-para>Magnetic susceptibility of recently isolated ternary and quaternary niobium chlorides containing rare-earth atoms are presented (RENb
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<title>Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb6Cl18 and MRENb6Cl18 (RE = rare-Earth; M = monovalent cation)</title>
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<title>Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb</title>
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<namePart type="family">Ihmaïne</namePart>
<affiliation>Laboratoire de Chimie Minérale B, U.R.A. C.N.R.S. no. 254, Université de Rennes I, 35042 Rennes Cédex, France</affiliation>
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<affiliation>Laboratoire de Chimie Minérale B, U.R.A. C.N.R.S. no. 254, Université de Rennes I, 35042 Rennes Cédex, France</affiliation>
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<namePart type="family">Peña</namePart>
<affiliation>Laboratoire de Chimie Minérale B, U.R.A. C.N.R.S. no. 254, Université de Rennes I, 35042 Rennes Cédex, France</affiliation>
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<affiliation>Laboratoire de Chimie Minérale B, U.R.A. C.N.R.S. no. 254, Université de Rennes I, 35042 Rennes Cédex, France</affiliation>
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<abstract lang="en">Abstract: Magnetic susceptibility of recently isolated ternary and quaternary niobium chlorides containing rare-earth atoms are presented (RENb6Cl18, MRENb6Cl18; M = monovalent, RE = rare earth). These phases contain |Nb6Cl18|n- units and crystallize in the R3̄ space group, except for the CsRENb6Cl18 compounds which crystallize in hexagonal P3̄1c. These |Nb6Cl18|n- units may present a magnetic behaviour corresponding to one unpaired electron per Nb6 cluster (n = 3,15 e7minus;/Nb6), or may be nonmagnetic (n = 4, 16e−/Nb6). The magnetic state of both clusters and rare-earth atoms were studied on single crystals and powders. Interesting features are seen such as: magnetic interactions, Van Vleck susceptibility, mixed valences and magnetic anisotropy.</abstract>
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<identifier type="ISSN">0921-4526</identifier>
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