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Synthesis of single crystalline triangular and hexagonal Ni nanosheets with enhanced magnetic properties

机译:具有增强磁性的单晶三角形和六角形镍纳米片的合成

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For the first time, single crystalline Ni nanosheets have been successfully synthesized with the aid of iron species. The as-prepared nanosheets are mainly triangular and hexagonal in shape, with edge lengths ranging from several tens to several hundreds of nanometres. The exposed sheet planes are assigned to be (111) planes of a face-centred cubic nickel crystal. The well defined geometry enhances the anisotropic energy of Ni nanosheets, and therefore increases its blocking temperature (Tg) to room temperature. Notably, the coercive force of the Ni nanosheets is 172 Oe at 300 K, which is significantly higher than that of the bulk one (ca. 0.7 Oe at room temperature). A possible mechanism is proposed to explain the formation of the thermodynamically unfavorable morphology of nanosheets. We suggest that crystal twinning, which is formed by etching of the introduced iron species with oleic acid, lowers the system energy, and leads to the growth of these Ni nanosheets.
机译:首次借助铁物种成功合成了单晶Ni纳米片。所制备的纳米片的形状主要为三角形和六边形,边缘长度为几十至几百纳米。将裸露的平面指定为面心立方镍晶体的(111)平面。定义明确的几何形状可增强Ni纳米片材的各向异性能,因此可将其阻断温度(Tg)提高至室温。值得注意的是,Ni纳米片的矫顽力在300 K时为172 Oe,大大高于本体纳米的矫顽力(室温下约为0.7 Oe)。提出了一种可能的机制来解释纳米片的热力学不利形态的形成。我们建议通过用油酸蚀刻引入的铁物种而形成的晶体孪晶降低系统能量,并导致这些Ni纳米片的生长。

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