Direct observation of a highly spin-polarized organic spinterface at room temperature

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作者
F. Djeghloul
F. Ibrahim
M. Cantoni
M. Bowen
L. Joly
S. Boukari
P. Ohresser
F. Bertran
P. Le Fèvre
P. Thakur
F. Scheurer
T. Miyamachi
R. Mattana
P. Seneor
A. Jaafar
C. Rinaldi
S. Javaid
J. Arabski
J. -P Kappler
W. Wulfhekel
N. B. Brookes
R. Bertacco
A. Taleb-Ibrahimi
M. Alouani
E. Beaurepaire
W. Weber
机构
[1] IPCMS UMR FSOH CNRS-UdS,LNESS – Dipartimento di Fisica
[2] Politecnico di Milano,undefined
[3] Swiss Light Source,undefined
[4] Paul Scherrer Institut,undefined
[5] Synchrotron Soleilx,undefined
[6] L'Orme des Merisiers Saint-Aubin,undefined
[7] European Synchrotron Radiation Facility (ESRF),undefined
[8] Physikalisches Institut and Center for Functional Nanostructures,undefined
[9] Karlsruhe Institute of Technology,undefined
[10] Unité Mixte de Physique CNRS/Thales,undefined
[11] 91767 Palaiseau,undefined
[12] France associée à l’Université de Paris-Sud,undefined
来源
Scientific Reports | / 3卷
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摘要
Organic semiconductors constitute promising candidates toward large-scale electronic circuits that are entirely spintronics-driven. Toward this goal, tunneling magnetoresistance values above 300% at low temperature suggested the presence of highly spin-polarized device interfaces. However, such spinterfaces have not been observed directly, let alone at room temperature. Thanks to experiments and theory on the model spinterface between phthalocyanine molecules and a Co single crystal surface, we clearly evidence a highly efficient spinterface. Spin-polarised direct and inverse photoemission experiments reveal a high degree of spin polarisation at room temperature at this interface. We measured a magnetic moment on the molecule’s nitrogen π orbitals, which substantiates an ab-initio theoretical description of highly spin-polarised charge conduction across the interface due to differing spinterface formation mechanisms in each spin channel. We propose, through this example, a recipe to engineer simple organic-inorganic interfaces with remarkable spintronic properties that can endure well above room temperature.
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