Spin density wave and superconducting properties of nanoparticle organic conductor assemblies

dc.contributor.author
Winter, Laurel E.
dc.contributor.author
Steven, Eden
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Brooks, James S.
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Benjamin, Shermane
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Park, Ju-Hyun.
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De Caro, Dominique
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Faulmann, Christophe
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Valade, Lydie
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Jacob, Kane
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Chtioui, Imane
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Ballesteros, Belén
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Fraxedas, Jordi
dc.date.issued
2015
dc.identifier
https://ddd.uab.cat/record/200196
dc.identifier
urn:10.1103/PhysRevB.91.035437
dc.identifier
urn:oai:ddd.uab.cat:200196
dc.identifier
urn:scopus_id:84921764230
dc.identifier
urn:articleid:1550235Xv91n3p35437
dc.identifier
urn:wos_id:000348834400002
dc.identifier
urn:icn2uab:4130038
dc.identifier
urn:oai:egreta.uab.cat:publications/754fbf3e-f902-4804-a5b1-7e97f5b6160e
dc.description.abstract
The magnetic susceptibilities of nanoparticle assemblies of two Bechgaard salts (TMTSF)2PF6 and (TMTSF)2ClO4, have been studied vs temperature and magnetic field. In the bulk these materials exhibit a spin density wave formation (TSDW=12K) and superconductivity (Tc=1.2K), respectively. We show from inductive (susceptibility) measurements that the nanoparticle assemblies exhibit ground-state phase transitions similar to those of randomly oriented polycrystalline samples of the parent materials. Resistivity and diamagnetic shielding measurements yield additional information on the functional nanoparticle structure in terms of stoichiometric and nonstoichiometric composition.
dc.format
application/pdf
dc.language
eng
dc.publisher
dc.relation
Physical review B : Condensed matter and materials physics ; Vol. 91, issue 3 (Jan. 2015), art. 35437
dc.rights
open access
dc.rights
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dc.rights
https://rightsstatements.org/vocab/InC/1.0/
dc.title
Spin density wave and superconducting properties of nanoparticle organic conductor assemblies
dc.type
Article


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