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底物诱导的铁卟啉分子的磁有序和开关效应。

Substrate-induced magnetic ordering and switching of iron porphyrin molecules.

作者信息

Wende H, Bernien M, Luo J, Sorg C, Ponpandian N, Kurde J, Miguel J, Piantek M, Xu X, Eckhold Ph, Kuch W, Baberschke K, Panchmatia P M, Sanyal B, Oppeneer P M, Eriksson O

机构信息

Institut für Experimentalphysik, Freie Universität Berlin, Arnimallee 14, D-14195 Berlin-Dahlem, Germany.

出版信息

Nat Mater. 2007 Jul;6(7):516-20. doi: 10.1038/nmat1932. Epub 2007 Jun 10.

Abstract

To realize molecular spintronic devices, it is important to externally control the magnetization of a molecular magnet. One class of materials particularly promising as building blocks for molecular electronic devices is the paramagnetic porphyrin molecule in contact with a metallic substrate. Here, we study the structural orientation and the magnetic coupling of in-situ-sublimated Fe porphyrin molecules on ferromagnetic Ni and Co films on Cu(100). Our studies involve X-ray absorption spectroscopy and X-ray magnetic circular dichroism experiments. In a combined experimental and computational study we demonstrate that owing to an indirect, superexchange interaction between Fe atoms in the molecules and atoms in the substrate (Co or Ni) the paramagnetic molecules can be made to order ferromagnetically. The Fe magnetic moment can be rotated along directions in plane as well as out of plane by a magnetization reversal of the substrate, thereby opening up an avenue for spin-dependent molecular electronics.

摘要

为了实现分子自旋电子器件,从外部控制分子磁体的磁化至关重要。作为分子电子器件构建块特别有前景的一类材料是与金属衬底接触的顺磁卟啉分子。在此,我们研究原位升华的铁卟啉分子在铜(100)上的铁磁镍和钴薄膜上的结构取向和磁耦合。我们的研究包括X射线吸收光谱和X射线磁圆二色性实验。在一项结合实验和计算的研究中,我们证明,由于分子中的铁原子与衬底(钴或镍)中的原子之间存在间接的超交换相互作用,顺磁分子可以被排列成铁磁有序。通过衬底的磁化反转,铁磁矩可以在平面内以及平面外的方向上旋转,从而为自旋相关的分子电子学开辟了一条途径。

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