Crystal and Magnetic Structures in Layered, Transition Metal Dihalides and Trihalides
Кристаллические и магнитные структуры в слоистых дигалогенидах и трихалогенидах переходных металлов
2017-04-27
SCID: 54.1/kxq3w2ve
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crystallographic properties and magnetic structureslayered transition metal dihalideslayered transition metal trihalideslow-dimensional magnetismvan der Waals layered materials
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Abstract (AI)
Materials composed of two dimensional layers bonded to one another through weak van der Waals interactions often exhibit strongly anisotropic behaviors and can be cleaved into very thin specimens and sometimes into monolayer crystals. Interest in such materials is driven by the study of low dimensional physics and the design of functional heterostructures. Binary compounds with the compositions M X 2 and M X 3 where M is a metal cation and X is a halogen anion often form such structures. Magnetism can be incorporated by choosing a transition metal with a partially filled d-shell for M, enabling ferroic responses for enhanced functionality. Here a brief overview of binary transition metal dihalides and trihalides is given, summarizing their crystallographic properties and long-range-ordered magnetic structures, focusing on those materials with layered crystal structures and partially filled d-shells required for combining low dimensionality and cleavability with magnetism.
Key Findings
1
Interest in these materials is motivated by their strongly anisotropic behaviors and potential for designing functional heterostructures exploiting low-dimensional physics.
2
Layered binary transition metal dihalides (MX2) and trihalides (MX3) often form van der Waals-bonded structures that are cleavable to thin specimens and monolayers.
3
The paper summarizes crystallographic properties and long-range-ordered magnetic structures of layered transition metal dihalides and trihalides that combine cleavability with magnetism.
4
Using transition metals with partially filled d-shells in MX2 and MX3 incorporates magnetism, enabling ferroic responses in these low-dimensional materials.
Research Object
Layered binary transition-metal dihalide and trihalide compounds (M X2 and M X3) with partially filled d-shells
Research Subject
Their crystallographic (layered) structures and long-range-ordered magnetic structures, i.e., the relationship between crystal structure, low dimensionality/cleavability, and magnetic ordering in these materials
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2017-04-27
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