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Supramolecular Structures with Metal-Oxalate Framework forMolecular Electronic Materials based on Gyroids

机译:基于陀螺仪的金属 - 草酸骨架框架的超分子结构

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[MnCr(oxalate)]-complexes form network structures from 1D to 3D through alternatearrangement of Mn2+ and Cr3+ in the crystal.Especially,two-dimensional honeycombstructures exhibit ferromagnetic transitions at around 5 K and can incorporate variety ofcation structures between the layers such as organic conductors exhibiting metallicconductivity1 and chiral cations inducing chiral magnetism.In the present study,weintroduced supramolecular cation structures in the network of [MnCr(oxalate)]-to developmultifunctional materials based on the dynamic feature of supramolecular cations andferromagnetic properties of [MnCr(oxalate)]-.
机译:[MNCR(草酸)] - 复合物通过晶体的Mn2 +和Cr3 +的另外性地形成从1D到3D的网络结构。特别地,二维蜂窝结构显示在约5 k左右的铁磁性转变,并且可以在诸如有机物如有机物之类的层之间结合各种各样的组织结构表现出金属导电性1和手性阳离子诱导手性磁性。本研究,Weintroduce在[MNCR(草酸)]网络中的超分子阳离子结构 - 基于[MNCR(草酸)的超分子阳离子的动态特征为多官能材料。 - 。

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