Structure and Magnetization of Small Monodisperse Platinum Clusters

Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5) microB per atom. The effect is partl...

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Vydané v:Physical review letters Ročník 97; číslo 25; s. 253401
Hlavní autori: Liu, Xiong, Bauer, Matthias, Bertagnolli, Helmut, Roduner, Emil, van Slageren, Joris, Phillipp, Fritz
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States 22.12.2006
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Abstract Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5) microB per atom. The effect is partly quenched by hydrogen chemisorption. The study provides insight into the electronic structure of the cluster and is fundamental for an understanding of how magnetism develops in small clusters.
AbstractList Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13{+-}2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5){mu}{sub B} per atom. The effect is partly quenched by hydrogen chemisorption. The study provides insight into the electronic structure of the cluster and is fundamental for an understanding of how magnetism develops in small clusters.
Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5) microB per atom. The effect is partly quenched by hydrogen chemisorption. The study provides insight into the electronic structure of the cluster and is fundamental for an understanding of how magnetism develops in small clusters.
Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5) microB per atom. The effect is partly quenched by hydrogen chemisorption. The study provides insight into the electronic structure of the cluster and is fundamental for an understanding of how magnetism develops in small clusters.Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic polarization with up to 8 unpaired electrons on a cluster, corresponding to a magnetic moment of 0.65(5) microB per atom. The effect is partly quenched by hydrogen chemisorption. The study provides insight into the electronic structure of the cluster and is fundamental for an understanding of how magnetism develops in small clusters.
ArticleNumber 253401
Author Bertagnolli, Helmut
van Slageren, Joris
Phillipp, Fritz
Bauer, Matthias
Liu, Xiong
Roduner, Emil
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https://www.osti.gov/biblio/20861521$$D View this record in Osti.gov
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Snippet Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13+/-2 atoms in a zeolite confirm the predicted extraordinary magnetic...
Magnetization measurements of well-characterized monodisperse Pt clusters consisting of 13{+-}2 atoms in a zeolite confirm the predicted extraordinary magnetic...
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StartPage 253401
SubjectTerms ATOMIC AND MOLECULAR PHYSICS
ATOMIC CLUSTERS
ATOMS
CHEMISORPTION
ELECTRONIC STRUCTURE
ELECTRONS
HYDROGEN
MAGNETIC MOMENTS
MAGNETISM
MAGNETIZATION
PLATINUM
POLARIZATION
ZEOLITES
Title Structure and Magnetization of Small Monodisperse Platinum Clusters
URI https://www.ncbi.nlm.nih.gov/pubmed/17280350
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