Disentangling Magnetic Hardening and Molecular Spin Chain Contributions to Exchange Bias in Ferromagnet/Molecule Bilayers

被引:29
作者
Boukari, Samy [1 ]
Jabbar, Hashim [1 ]
Schleicher, Filip [1 ]
Gruber, Manuel [1 ,4 ]
Avedissian, Garen [1 ]
Arabski, Jacek [1 ]
Da Costa, Victor [1 ]
Schmerber, Guy [1 ]
Rengasamy, Prashanth [1 ]
Vileno, Bertrand [2 ,3 ]
Weber, Wolfgang [1 ]
Bowen, Martin [1 ]
Beaurepaire, Eric [1 ]
机构
[1] Univ Strasbourg, CNRS, Inst Phys & Chim Mat Strasbourg, UMR 7504, 23 Rue Loess,BP 43, F-67034 Strasbourg 2, France
[2] Univ Strasbourg, CNRS, Inst Chim Strasbourg, UMR 7177, 4 Rue Blaise Pascal, F-67081 Strasbourg, France
[3] CNRS 3443, Federat IR RPE, French EPR Federat Res REseau Natl Rpe InterDisci, F-59655 Villeneuve Dascq, France
[4] Christian Albrechts Univ Kiel, Inst Expt & Angew Phys, D-24098 Kiel, Germany
关键词
Organic spintronics; organic-inorganic interfaces; exchange bias; molecular magnetism; ferromagnetic resonance; THIN-FILMS; PHTHALOCYANINE; INTERFACE; DEVICES; POLARIZATION; SUBSTRATE; INJECTION; IRON;
D O I
10.1021/acs.nanolett.8b00570
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We performed ferromagnetic resonance and magnetometry experiments to clarify the relationship between two reported magnetic exchange effects arising from interfacial spin-polarized charge transfer in ferromagnetic metal (FM)/molecule bilayers: the magnetic hardening effect and spinterface-stabilized molecular spin chains. To disentangle these effects, we tuned the metal phthalocyanine molecule central site's magnetic moment to enhance or suppress the formation of spin chains in the molecular film. We find that both effects are distinct, and additive. In the process, we extend the list of FM/molecule candidate pairs that are known to generate magnetic exchange effects, experimentally confirm the predicted increase in anisotropy upon molecular adsorption, and show that spin chains within the molecular film can enhance magnetic exchange. Our results confirm, as an echo to progress regarding inorganic spintronic tunnelling, that spintronic tunnelling across structurally ordered organic barriers has been reached through previous magnetotransport experiments.
引用
收藏
页码:4659 / 4663
页数:5
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