Spin-communication channels between Ln(III) bis-phthalocyanines molecular nanomagnets and a magnetic substrate

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作者
A. Candini
D. Klar
S. Marocchi
V. Corradini
R. Biagi
V. De Renzi
U. del Pennino
F. Troiani
V. Bellini
S. Klyatskaya
M. Ruben
K. Kummer
N. B. Brookes
H. Huang
A. Soncini
H. Wende
M. Affronte
机构
[1] Centro S3,Dipartimento di Scienze Fisiche
[2] Istituto Nanoscienze - CNR,undefined
[3] Faculty of Physics and Center for Nanointegration Duisburg-Essen (CENIDE),undefined
[4] University of Duisburg-Essen,undefined
[5] Informatiche e Matematiche,undefined
[6] Institute of Nanotechnology,undefined
[7] Karlsruhe Institute of Technology (KIT),undefined
[8] Institut de Physique et Chimie des Matériaux de Strasbourg,undefined
[9] European Synchrotron Radiation Facility (ESRF),undefined
[10] School of Chemistry,undefined
[11] The University of Melbourne,undefined
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摘要
Learning the art of exploiting the interplay between different units at the atomic scale is a fundamental step in the realization of functional nano-architectures and interfaces. In this context, understanding and controlling the magnetic coupling between molecular centers and their environment is still a challenging task. Here we present a combined experimental-theoretical work on the prototypical case of the bis(phthalocyaninato)-lanthanide(III) (LnPc2) molecular nanomagnets magnetically coupled to a Ni substrate. By means of X-ray magnetic circular dichroism we show how the coupling strength can be tuned by changing the Ln ion. The microscopic parameters of the system are determined by ab-initio calculations and then used in a spin Hamiltonian approach to interpret the experimental data. By this combined approach we identify the features of the spin communication channel: the spin path is first realized by the mediation of the external (5d) electrons of the Ln ion, keeping the characteristic features of the inner 4 f orbitals unaffected, then through the organic ligand, acting as a bridge to the external world.
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