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 : 002723Magnetic 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. SergentSource :
- Physica B: Physics of Condensed Matter [ 0921-4526 ] ; 1990.
English descriptors
- KwdEn :
- Acta cryst, Behaviour, Corresponding ternary compound, Divalent, Divalent state, Effective moment, Further work, Ground state, Ihmaine, Magnetic anisotropy, Magnetic behaviour, Magnetic clusters, Magnetic interactions, Magnetic state, Magnetic studies, Magnetic susceptibility, Monovalent cation, Niobium, Oxidation states, Quaternary, Quaternary chlorides, Quaternary compound, Sergent, Single crystals, Singlet ground state, Sintered, Sintered powder, Such interactions, Susceptibility, Ternary, Vleck, Vleck susceptibility.
- Teeft :
- Acta cryst, Behaviour, Corresponding ternary compound, Divalent, Divalent state, Effective moment, Further work, Ground state, Ihmaine, Magnetic anisotropy, Magnetic behaviour, Magnetic clusters, Magnetic interactions, Magnetic state, Magnetic studies, Magnetic susceptibility, Monovalent cation, Niobium, Oxidation states, Quaternary, Quaternary chlorides, Quaternary compound, Sergent, Single crystals, Singlet ground state, Sintered, Sintered powder, Such interactions, Susceptibility, Ternary, Vleck, Vleck susceptibility.
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
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<front><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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<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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<abstract xml:lang="en"><p>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.</p>
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<head><ce:title>Magnetic susceptibility studies of some new ternary and quaternary chlorides RENb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
and MRENb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
(RE = rare-Earth; M = monovalent cation)</ce:title>
<ce:author-group><ce:author><ce:given-name>S.</ce:given-name>
<ce:surname>Ihmaïne</ce:surname>
</ce:author>
<ce:author><ce:given-name>C.</ce:given-name>
<ce:surname>Perrin</ce:surname>
</ce:author>
<ce:author><ce:given-name>O.</ce:given-name>
<ce:surname>Peña</ce:surname>
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<ce:surname>Sergent</ce:surname>
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<ce:abstract><ce:section-title>Abstract</ce:section-title>
<ce:abstract-sec><ce:simple-para>Magnetic susceptibility of recently isolated ternary and quaternary niobium chlorides containing rare-earth atoms are presented (RENb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
, MRENb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
; M = monovalent, RE = rare earth). These phases contain |Nb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
|<ce:sup><ce:italic>n-</ce:italic>
</ce:sup>
units and crystallize in the R3̄ space group, except for the CsRENb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
compounds which crystallize in hexagonal P3̄1c. These |Nb<ce:inf>6</ce:inf>
Cl<ce:inf>18</ce:inf>
|<ce:sup><ce:italic>n-</ce:italic>
</ce:sup>
units may present a magnetic behaviour corresponding to one unpaired electron per Nb<ce:inf>6</ce:inf>
cluster (<ce:italic>n</ce:italic>
= 3,15 e<ce:sup>7minus;</ce:sup>
/Nb<ce:inf>6</ce:inf>
), or may be nonmagnetic (<ce:italic>n</ce:italic>
= 4, 16e<ce:sup>−</ce:sup>
/Nb<ce:inf>6</ce:inf>
). 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.</ce:simple-para>
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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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<name type="personal"><namePart type="given">C.</namePart>
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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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<name type="personal"><namePart type="given">O.</namePart>
<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>
<relatedItem type="host"><titleInfo><title>Physica B: Physics of Condensed Matter</title>
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<genre type="journal" authority="ISTEX" authorityURI="https://publication-type.data.istex.fr" valueURI="https://publication-type.data.istex.fr/ark:/67375/JMC-0GLKJH51-B">journal</genre>
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<dateIssued encoding="w3cdtf">199004</dateIssued>
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<identifier type="ISSN">0921-4526</identifier>
<identifier type="PII">S0921-4526(00)X0191-3</identifier>
<part><date>199004</date>
<detail type="volume"><number>163</number>
<caption>vol.</caption>
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<detail type="issue"><number>1–3</number>
<caption>no.</caption>
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<extent unit="issue-pages"><start>1</start>
<end>755</end>
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<extent unit="pages"><start>615</start>
<end>617</end>
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<identifier type="DOI">10.1016/0921-4526(90)90286-4</identifier>
<identifier type="PII">0921-4526(90)90286-4</identifier>
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