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Realization of high Curie temperature ferromagnetism in atomically thin MoS2 and WS2 nanosheets with uniform and flower-like morphology

机译:实现高居里温度铁磁性自动薄二硫化钼和二硫化钨nanosheets制服和枯萎形态

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摘要

High Curie temperature ferromagnetism has been realized in atomically thin MoS2 and WS2 nanosheets. The ultrathin nanosheet samples were prepared via a novel, simple and efficient chemical vapor deposition method; different kinds of transition metal disulfides (MoS2 and WS2) could be obtained by sulphuring the corresponding cation sources (MoO3 and WCl6). Through related morphological and structural characterization, we confirm that large-area, uniform, few-layer MoS2 and WS2 nanosheets were successfully synthesized by this method. Both nanosheet samples exhibit distinct ferromagnetic behavior. By careful measurement and fitting of the magnetization of MoS2 and WS2 samples at different temperatures, we deconstruct the magnetization into its diamagnetic, paramagnetic and ferromagnetic contributions. The ferromagnetic contributions persist until 865 K for MoS2 and 820 K for WS2. We attribute the observed ferromagnetic properties to the defects and dislocations produced during the growth process, as well as the presence of edge spins at the edge of the nanosheets.
机译:高居里温度铁磁性实现自动薄二硫化钼和二硫化钨nanosheets。准备通过一个小说,简单而高效化学汽相淀积方法;过渡金属二硫(二硫化钼和WS2)可以获得通过硫相应的吗阳离子(MoO3和WCl6)来源。形态和结构特征,我们确认大面积、均匀,few-layer二硫化钼和二硫化钨nanosheets被成功合成通过这种方法。不同的铁磁行为。测量和拟合的磁化二硫化钼和二硫化钨样品在不同温度下,我们解构磁化到它抗磁性、顺磁和铁磁的贡献。二硫化钼持续至865 K和820 K二硫化钨。我们在观察铁磁属性属性的缺陷和混乱在经济增长过程中产生,以及的存在边缘旋转的边缘nanosheets。

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