Quantum tunnelling of the magnetization in a monolayer of oriented single-molecule magnets

被引:0
|
作者
M. Mannini
F. Pineider
C. Danieli
F. Totti
L. Sorace
Ph. Sainctavit
M.-A. Arrio
E. Otero
L. Joly
J. C. Cezar
A. Cornia
R. Sessoli
机构
[1] University of Florence,Department of Chemistry ‘Ugo Schiff’ and INSTM Research Unit
[2] 50019 Sesto Fiorentino,Department of Chemistry and INSTM Research Unit
[3] Italy,undefined
[4] ISTM-CNR,undefined
[5] URT Firenze,undefined
[6] University of Florence,undefined
[7] University of Modena and Reggio Emilia,undefined
[8] 41100 Modena,undefined
[9] Italy,undefined
[10] Institut de Minéralogie et de Physique des Milieux Condensés,undefined
[11] CNRS UMR7590,undefined
[12] Université Pierre et Marie Curie,undefined
[13] 75252 Paris,undefined
[14] France,undefined
[15] Synchrotron Soleil,undefined
[16] Saint Aubin,undefined
[17] 91192 Gif sur Yvette,undefined
[18] France,undefined
[19] Swiss Light Source,undefined
[20] Paul Scherrer Institut,undefined
[21] 5232 Villigen,undefined
[22] Switzerland,undefined
[23] European Synchrotron Radiation Facility,undefined
[24] 38043 Grenoble,undefined
[25] France,undefined
[26] Present address: IPCMS – DMONS,undefined
[27] 67034 Strasbourg,undefined
[28] France.,undefined
来源
Nature | 2010年 / 468卷
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摘要
Single-molecule magnets are molecular complexes with magnetic bistability that may be exploited in information storage applications. Recently it was shown that such a molecular magnetic memory effect is retained for Fe4 clusters when they are wired to a gold surface. Mannini et al. have now tailored the clusters so that they have a preferential orientation and form a self-assembled monolayer on the surface. As a result, it becomes possible to observe a striking effect of single-molecule magnets — quantum tunnelling of the magnetization, which shows up as steps in the magnetic hysteresis loop. This approach may be of use for the design of practical thin-film molecular spintronic devices.
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页码:417 / 421
页数:4
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