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

被引:559
作者
Mannini, M. [1 ,2 ,3 ]
Pineider, F. [1 ,2 ]
Danieli, C. [4 ,5 ]
Totti, F. [1 ,2 ]
Sorace, L. [1 ,2 ]
Sainctavit, Ph. [6 ]
Arrio, M. -A. [6 ]
Otero, E. [7 ]
Joly, L. [8 ]
Cezar, J. C. [9 ]
Cornia, A. [4 ,5 ]
Sessoli, R. [1 ,2 ]
机构
[1] Univ Florence, Dept Chem Ugo Schiff, I-50019 Sesto Fiorentino, Italy
[2] Univ Florence, INSTM Res Unit, I-50019 Sesto Fiorentino, Italy
[3] Univ Florence, ISTM CNR, URT Firenze, I-50019 Sesto Fiorentino, Italy
[4] Univ Modena & Reggio Emilia, Dept Chem, I-41100 Modena, Italy
[5] Univ Modena & Reggio Emilia, INSTM Res Unit, I-41100 Modena, Italy
[6] Univ Paris 06, CNRS, UMR7590, Inst Mineral & Phys Milieux Condenses, F-75252 Paris, France
[7] Synchrotron Soleil, F-91192 Gif Sur Yvette, France
[8] Paul Scherrer Inst, Swiss Light Source, CH-5232 Villigen, Switzerland
[9] European Synchrotron Radiat Facil, F-38043 Grenoble, France
关键词
ANISOTROPY; DICHROISM; FE; SPINTRONICS; SPECTRA; EDGE; GOLD;
D O I
10.1038/nature09478
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A fundamental step towards atomic- or molecular-scale spintronic devices has recently been made by demonstrating that the spin of an individual atom deposited on a surface(1), or of a small paramagnetic molecule embedded in a nanojunction(2), can be externally controlled. An appealing next step is the extension of such a capability to the field of information storage, by taking advantage of the magnetic bistability and rich quantum behaviour of single-molecule magnets(3-6) (SMMs). Recently, a proof of concept that the magnetic memory effect is retained when SMMs are chemically anchored to a metallic surface(7) was provided. However, control of the nanoscale organization of these complex systems is required for SMMs to be integrated into molecular spintronic devices(8,9). Here we show that a preferential orientation of Fe(4) complexes on a gold surface can be achieved by chemical tailoring. As a result, the most striking quantum feature of SMMs-their stepped hysteresis loop, which results from resonant quantum tunnelling of the magnetization(5,6)-can be clearly detected using synchrotron-based spectroscopic techniques. With the aid of multiple theoretical approaches, we relate the angular dependence of the quantum tunnelling resonances to the adsorption geometry, and demonstrate that molecules predominantly lie with their easy axes close to the surface normal. Our findings prove that the quantum spin dynamics can be observed in SMMs chemically grafted to surfaces, and offer a tool to reveal the organization of matter at the nanoscale.
引用
收藏
页码:417 / 421
页数:5
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