TY - JOUR
T1 - Classes of nanomagnets created from alkanethiol-coated Pt or Pd nanoparticles and their alloys with Co
AU - Miyazaki, Akira
AU - Ito, Yoshikazu
AU - Enoki, Toshiaki
PY - 2010/9
Y1 - 2010/9
N2 - Alkanethiol-coated metal nanoparticles are fascinating materials for designing unconventional electronic and magnetic functions. Novel classes of magnetic nanosystems can be created using Pd and Pt nanoparticles and their alloys with a 3d transition metal using quantum size, interface and exchange enhancement effects. The charge transfer at the metal-organic interface and the quantum size effect render Pt and Pd nanoparticles magnetic with localised moments. The substitution of capping molecules with a TTF derivative having along alkanethiol substituent decreases the totalspin concentration due to partial oxidation of the TTF units. Pd nanoparticles containing Co atoms as magnetic centres have significantly enhanced magnetic moments because of the exchange enhancement. Interestingly, in Pd nanoparticles of 2 nm in diameter containing only one Co atom per particle, the Co atom magnetises all of the Pd atoms in the particle. Therefore, the nanoparticles behave as a single nanoparticle magnet that shows blocking behaviour.
AB - Alkanethiol-coated metal nanoparticles are fascinating materials for designing unconventional electronic and magnetic functions. Novel classes of magnetic nanosystems can be created using Pd and Pt nanoparticles and their alloys with a 3d transition metal using quantum size, interface and exchange enhancement effects. The charge transfer at the metal-organic interface and the quantum size effect render Pt and Pd nanoparticles magnetic with localised moments. The substitution of capping molecules with a TTF derivative having along alkanethiol substituent decreases the totalspin concentration due to partial oxidation of the TTF units. Pd nanoparticles containing Co atoms as magnetic centres have significantly enhanced magnetic moments because of the exchange enhancement. Interestingly, in Pd nanoparticles of 2 nm in diameter containing only one Co atom per particle, the Co atom magnetises all of the Pd atoms in the particle. Therefore, the nanoparticles behave as a single nanoparticle magnet that shows blocking behaviour.
KW - Exchange enhancement
KW - Metal nanoparticles
KW - Metal-organic interface
KW - Quantum-size effect
KW - Single particle Magnet
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U2 - 10.1002/ejic.201000483
DO - 10.1002/ejic.201000483
M3 - Article
AN - SCOPUS:77957189931
SN - 0365-9496
SP - 4279
EP - 4287
JO - Berichte der deutschen chemischen Gesellschaft
JF - Berichte der deutschen chemischen Gesellschaft
IS - 27
ER -