Bandyopadhyay Arkamita, Frey Nathan C, Jariwala Deep, Shenoy Vivek B
Nano Lett. 2019 Nov 13;19(11):7793-7800. doi: 10.1021/acs.nanolett.9b02801. Epub 2019 Oct 15.
The family of 2D magnetic materials is continuously expanding because of the rapid discovery of exfoliable van der Waals magnetic systems. Recently, the synthesis of non-van der Waals magnetic "hematene" from common iron ore has opened an unconventional route to 2D material discovery. These non-van der Waals 2D systems are chemically stable and easily available and may have different or enhanced properties compared to their van der Waals counterparts. In this work, we have investigated and explained the nature of magnetic ordering in non-van der Waals 2D metal oxides. Two-dimensional hematene is found to be fully oxygen-passivated and stable under ambient conditions. It exhibits a striped ferrimagnetic ground state with a small net magnetic moment. Superexchange interactions are predicted to control the magnetic ground state of hematene, where pressure-induced spin crossover results in an observable net magnetic moment. Modulating the superexchange by alloying hematenes alters the magnetic ordering, tuning the system to a ferromagnetic ground state. Extending this strategy to the design of a new 2D material, we propose 2D chromia (α-CrO) or "chromene", which, because of larger inter-transition metal distances and suppressed AFM superexchange, has a ferromagnetic ground state. We also show that tuning the magnetic ordering in these materials controls the transport properties by modulating the band gap, which may be of use in spintronic or catalytic applications.
由于可剥离范德华磁体系的迅速发现,二维磁性材料家族正在不断扩大。最近,由普通铁矿石合成非范德华磁性“黑烯”为二维材料的发现开辟了一条非常规途径。这些非范德华二维体系化学性质稳定且易于获取,与范德华对应物相比可能具有不同或增强的性能。在这项工作中,我们研究并解释了非范德华二维金属氧化物中磁有序的本质。发现二维黑烯在环境条件下完全被氧钝化且稳定。它呈现出具有小净磁矩的条纹亚铁磁基态。预计超交换相互作用控制黑烯的磁基态,其中压力诱导的自旋交叉导致可观测的净磁矩。通过黑烯合金化调节超交换会改变磁有序,将体系调谐到铁磁基态。将此策略扩展到新型二维材料的设计中,我们提出二维氧化铬(α-CrO)或“铬烯”,由于更大的过渡金属间距和抑制的反铁磁超交换,其具有铁磁基态。我们还表明,调节这些材料中的磁有序通过调制带隙来控制输运性质,这可能在自旋电子学或催化应用中有用。