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Hydrogen dangling bonds induce ferromagnetism in two-dimensional metal-free graphitic-C3N4 nanosheets

机译:氢悬挂键在二维无金属石墨C3N4纳米片中诱导铁磁性

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摘要

Ferromagnetic two-dimensional (2D) ultrathin nanosheets hold great promise for next generation electronics. Ferromagnetic metal-free materials that usually possess only an s/p electronic configuration with weak spin–orbit coupling and a large spin relaxation time, would play an important role in constructing future spintronic devices. However, the absence of an intrinsic spin ordering structure in most metal-free materials greatly hampers the widening scope of ferromagnetic 2D nanostructures as well as in-depth understanding of their ferromagnetic nature. Herein, the induction of intrinsic ferromagnetism in 2D metal-free g-C3N4 ultrathin nanosheets has been achieved through a new effective strategy whereby hydrogen dangling bonds are introduced. In our case, g-C3N4 ultrathin nanosheets with hydrogen dangling bonds showed obvious room temperature ferromagnetic behavior that could even be tuned by the concentration of hydrogen. This work will pave a new pathway to engineer the properties of 2D nanomaterial systems.
机译:铁磁二维(2D)超薄纳米片对下一代电子产品具有广阔的前景。通常仅具有s / p电子结构,自旋-轨道耦合弱和自旋弛豫时间长的无铁磁材料将在构造未来的自旋电子器件中发挥重要作用。然而,在大多数无金属的材料中缺乏固有的自旋有序结构极大地阻碍了铁磁二维纳米结构的扩大范围以及对它们的铁磁性质的深入了解。本文中,通过引入氢悬挂键的新有效策略,已在2D无金属g-C3N4超薄纳米片中实现了固有铁磁性的诱导。在我们的案例中,具有氢悬挂键的g-C3N4超薄纳米片表现出明显的室温铁磁行为,甚至可以通过氢的浓度对其进行调节。这项工作将为设计2D纳米材料系统的特性铺平一条新途径。

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