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Magnetic Characterization of Cobalt Selenide and Nickel Selenide Thin Films

机译:硒化钴和硒化镍薄膜的磁特性

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Transition metal dichalcogenides (TMDCs) are a family of materials whose crystalline structure consists of a layer of transition metal atoms sandwiched between 2 layers of chalcogenide atoms. Some of these materials can be grown in 2D hexagonal phase and show tunability of their electrical and magnetic properties based on layer thickness. One aspect of these materials that has received little attention is their magnetic properties. Hence, we have investigated magnetic properties of CoSe and NiSe (both 2D semiconductors), and their heterostructure. The reason for choosing these intrinsically ferromagnetic transition metal atoms based TMCs was to examine how reduction from the bulk to 2D films would influence the magnetic activity of these samples. In order to produce large area films, we have employed atomic layer deposition (ALD) for growth of uniform, few layer-thick films. First the composition and crystal structure of these films are characterized, and then their magnetic properties analyzed. We have found that thin films of both these materials show mostly paramagnetic behavior.
机译:过渡金属二硫化碳(TMDC)是一类材料,其晶体结构由夹在两层硫族化物原子之间的过渡金属原子层组成。这些材料中的某些可以在2D六角形相中生长,并根据层的厚度显示其电学和磁学性能的可调性。这些材料很少受到关注的一方面是它们的磁性能。因此,我们研究了CoSe和NiSe(均为2D半导体)的磁性能及其异质结构。选择这些本质上基于铁磁过渡金属原子的TMC的原因是要检查从体膜到2D膜的还原将如何影响这些样品的磁活性。为了生产大面积的薄膜,我们采用原子层沉积(ALD)来生长均匀的,很少层厚的薄膜。首先,对这些薄膜的组成和晶体结构进行表征,然后分析其磁性能。我们已经发现,这两种材料的薄膜大多表现出顺磁特性。

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