磁各向异性
材料科学
各向异性
凝聚态物理
纳米磁铁
磁性
磁场
磁晶各向异性
磁铁
各向异性能量
磁能
磁制冷
磁化
物理
光学
量子力学
作者
Mauro Perfetti,Mikkel A. Sørensen,Ursula Hansen,Heiko Bamberger,Samuel Lenz,Philipp P. Hallmen,T. Fennell,Giovanna G. Simeoni,Ana Arauzo,J. Bartolomé,Elena Bartolomé,Kim Lefmann,Høgni Weihe,Joris van Slageren,Jesper Bendix
标识
DOI:10.1002/adfm.201801846
摘要
Abstract The rational design of the magnetic anisotropy of molecular materials constitutes a goal of primary importance in molecular magnetism. Indeed, the applications of molecular nanomagnets, such as single‐molecule magnets and molecular magnetic refrigerants, depend on the full control over this property. Axially anisotropic magnetic systems are frequently classified as easy axis or easy plane, depending on whether the lowest energy is obtained by application of a magnetic field parallelly or perpendicularly to the unique axis. Here, the magnetic anisotropy of three lanthanide complexes is studied as a function of magnetic field and temperature. It is found that for two of these the type of magnetic anisotropy switches as a function of these parameters. Thus, this paper experimentally demonstrates that the magnetic anisotropy is not uniquely defined by the intrinsic electronic structure of the systems in question but can also be reversibly switched using external stimuli: temperature and magnetic field.
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