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首页> 外文期刊>Chemical science >Graphene related magnetic materials: micromechanical exfoliation of 2D layered magnets based on bimetallic anilate complexes with inserted [Fe-III(acac(2)-trien)](+) and [Fe-III(sal(2)-trien)](+) molecules
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Graphene related magnetic materials: micromechanical exfoliation of 2D layered magnets based on bimetallic anilate complexes with inserted [Fe-III(acac(2)-trien)](+) and [Fe-III(sal(2)-trien)](+) molecules

机译:石墨烯相关磁性材料:基于双金属苯甲酸酯配合物并插入[Fe-III(acac(2)-trien)](+)和[Fe-III(sal(2)-trien)](+)的2D层状磁体的微机械剥离)分子

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摘要

The syntheses, structures and magnetic properties of the coordination compounds of formula [Fe-III(acac(2)-trien)][(MnCrIII)-Cr-II(Cl-2 An)(3)]center dot(CH3CN)(2) (1), [Fe-III(acac(2)-trien)][(MnCrIII)-Cr-II(Br(2)An)(3)]center dot(CH3CN)(2) (2) and [Ga-III(acac(2)-trien)][(MnCrIII)-Cr-II(Br(2)An)(3)]center dot(CH3CN)(2) (3) are reported. They exhibit a 2D anionic network formed by Mn(II) and Cr(III) ions linked through anilate ligands, while the [Fe-III(acac(2)-trien)](+) or [Ga-III(acac(2)-trien)](+) charge-compensating cations are placed inside the hexagonal channels of the 2D network, instead of being inserted in the interlamellar spacing. Thus, these crystals are formed by hybrid layers assembled through van der Waals interactions. The magnetic properties indicate that these compounds behave as magnets exhibiting a long-range ferrimagnetic ordering at ca. 11 K, while the inserted Fe(III) cations remain in the high-spin state. As for graphene, these layered materials can be exfoliated in atomically-thin layers with heights down to 2 nm by using the well-known Scotch tape method. Hence, this micromechanical procedure provides a suitable way to isolate ultrathin layers of this kind of graphene related magnetic materials. Interestingly, this method can also be successfully used to exfoliate the 2D anilate-based compound [Fe-III(sal(2)-trien)][(MnCrIII)-Cr-II(Cl(2)An)(3)]center dot solv (4), which exhibits the typical alternated cation/anion layered structure. This result shows that the micromechanical exfoliation method, which has been extensively used for exfoliating van der Waals layered solids, can also be useful for exfoliating layered coordination compounds, even when they are formed by ionic components.
机译:式[Fe-III(acac(2)-trien)] [(MnCrIII)-Cr-II(Cl-2 An)(3)]中心点(CH3CN)()的配位化合物的合成,结构和磁性2)(1),[Fe-III(acac(2)-trien)] [(MnCrIII)-Cr-II(Br(2)An)(3)]中心点(CH3CN)(2)(2)和报告了[Ga-III(acac(2)-trien)] [(MnCrIII)-Cr-II(Br(2)An)(3)]中心点(CH3CN)(2)(3)。它们显示出由通过苯甲酸酯配体连接的Mn(II)和Cr(III)离子形成的2D阴离子网络,而[Fe-III(acac(2)-trien)](+)或[Ga-III(acac(2) )-trien)](+)电荷补偿阳离子放置在2D网络的六边形通道内部,而不是插入层间间距中。因此,这些晶体是由通过范德华相互作用组装的杂化层形成的。磁性能表明,这些化合物的行为类似于在ca处表现出远距离亚铁磁有序的磁体。 11 K,而插入的Fe(III)阳离子保持高自旋状态。对于石墨烯,可以使用众所周知的透明胶带方法将这些层状材料剥离成原子薄层,高度低至2 nm。因此,该微机械过程提供了分离这种石墨烯相关磁性材料的超薄层的合适方法。有趣的是,该方法也可以成功用于剥落2D苯甲酸酯基化合物[Fe-III(sal(2)-trien)] [(MnCrIII)-Cr-II(Cl(2)An)(3)]中心点溶剂(4),具有典型的交替阳离子/阴离子层状结构。该结果表明,已经广泛用于剥落范德华层状固体的微机械剥落方法,即使当它们由离子组分形成时,也可用于剥落层状配位化合物。

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