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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Giant magnetic anisotropy of a 5d transition metal decorated two-dimensional polyphthalocyanine framework
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Giant magnetic anisotropy of a 5d transition metal decorated two-dimensional polyphthalocyanine framework

机译:5d过渡金属修饰的二维聚酞菁骨架的巨磁各向异性

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摘要

Magnetic properties of a 5d transition-metal adatom decorated two dimensional (2D) polyphthalocyanine framework (TM@Pc) are systematically investigated by means of first-principles calculations. Giant perpendicular magnetic anisotropy with a MAE of up to 20.7 meV is found in Re@Pc. After decorating with a homonuclear transition metal adatom, overturning of the easy axis is demonstrated and the magnetic anisotropy energy can be increased to over 40 meV for Os-2@Pc and Ir-2@Pc. The origin of magnetic anisotropy, structural stability and magnetic coupling behavior is also discussed. All the results show that these 2D organic materials can serve as promising candidates for future magnetic storage devices.
机译:通过第一性原理计算,系统地研究了5d过渡金属吸附原子修饰的二维(2D)聚酞菁骨架(TM @ Pc)的磁性。在Re @ Pc中发现MAE高达20.7 meV的巨大垂直磁各向异性。用同核过渡金属原子修饰后,证明了易轴的翻转,并且对于Os-2 @ Pc和Ir-2 @ Pc,磁各向异性能可以增加到40meV以上。还讨论了磁各向异性的起源,结构稳定性和磁耦合行为。所有结果表明,这些2D有机材料可以用作未来磁存储设备的有前途的候选材料。

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