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通过氧化还原活性配位化学形成层状导电磁体 CrCl(pyrazine)。

Formation of the layered conductive magnet CrCl(pyrazine) through redox-active coordination chemistry.

机构信息

CNRS, CRPP, UMR 5031, Pessac, France.

Univ. Bordeaux, CRPP, UMR 5031, Pessac, France.

出版信息

Nat Chem. 2018 Oct;10(10):1056-1061. doi: 10.1038/s41557-018-0107-7. Epub 2018 Sep 10.

Abstract

The unique properties of graphene, transition-metal dichalcogenides and other two-dimensional (2D) materials have boosted interest in layered coordination solids. In particular, 2D materials that behave as both conductors and magnets could find applications in quantum magnetoelectronics and spintronics. Here, we report the synthesis of CrCl(pyrazine), an air-stable layered solid, by reaction of CrCl with pyrazine (pyz). This compound displays a ferrimagnetic order below ∼55 K, reflecting the presence of strong magnetic interactions. Electrical conductivity measurements demonstrate that CrCl(pyz) reaches a conductivity of 32 mS cm at room temperature, which operates through a 2D hopping-based transport mechanism. These properties are induced by the redox-activity of the pyrazine ligand, which leads to a smearing of the Cr 3d and pyrazine π states. We suggest that the combination of redox-active ligands and reducing paramagnetic metal ions represents a general approach towards tuneable 2D materials that consist of charge-neutral layers and exhibit both long-range magnetic order and high electronic conductivity.

摘要

石墨烯、过渡金属二卤化物和其他二维(2D)材料的独特性质激发了人们对层状配位固体的兴趣。特别是那些同时具有导体和磁体性质的 2D 材料,可能在量子磁电子学和自旋电子学中有应用。在这里,我们报告了 CrCl(吡嗪)的合成,这是一种通过 CrCl 与吡嗪(pyz)反应得到的空气稳定的层状固体。该化合物在约 55K 以下表现出亚铁磁有序,反映出存在强磁相互作用。电导率测量表明,CrCl(pyz)在室温下达到 32mS cm 的电导率,这是通过二维跳跃式输运机制实现的。这些性质是由吡嗪配体的氧化还原活性引起的,这导致了 Cr 3d 和吡嗪 π 态的展宽。我们认为,氧化还原活性配体和还原的顺磁金属离子的组合代表了一种通用的方法,可以得到由电荷中性层组成的可调谐 2D 材料,这些材料具有长程磁有序和高电子电导率。

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