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Investigation of structural, electronic and magnetic properties of breathing metal-organic framework MIL-47(Mn): a first principles approach

机译:呼吸金属 - 有机框架MIL-47(MN)结构,电子和磁性特性的研究:一种方法方法

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The structural, electronic and magnetic properties of the MIL-47(Mn) metal-organic framework are investigated using first principles calculations. We find that the large-pore structure is the ground state of this material. We show that upon transition from the large-pore to the narrow-pore structure, the magnetic ground-state configuration changes from antiferromagnetic to ferromagnetic, consistent with the computed values of the intra-chain coupling constant. Furthermore, the antiferromagnetic and ferromagnetic configuration phases have intrinsically different electronic behavior: the former is semiconducting, the latter is a metal or half-metal. The change of electronic properties during breathing posits MIL-47(Mn) as a good candidate for sensing and other applications. Our calculated electronic band structure for MIL-47(Mn) presents a combination of flat dispersionless and strongly dispersive regions in the valence and conduction bands, indicative of quasi-1D electronic behavior. The spin coupling constants are obtained by mapping the total energies onto a spin Hamiltonian. The inter-chain coupling is found to be at least one order of magnitude smaller than the intra-chain coupling for both large and narrow pores. Interestingly, the intra-chain coupling changes sign and becomes five times stronger going from the large pore to the narrow pore structure. As such MIL-47(Mn) could provide unique opportunities for tunable low-dimensional magnetism in transition metal oxide systems.
机译:在MIL-47(Mn)的金属 - 有机骨架的结构,电子和磁特性是使用第一原理计算的影响。我们发现,大孔结构是这种材料的基态。我们表明,从大孔到窄孔结构转换时,磁性基态结构从反铁磁性改变为铁磁性的,与链内耦合常数的计算值一致。此外,反铁磁性和铁磁性结构相有不同的固有的电子行为:前者是半导体的,后者是一种金属或半金属。电子性质的时呼吸的posits MIL-47(Mn)为作为一个很好的候选,用于感测和其他应用程序的改变。对于MIL-47(Mn)的我们的计算电子能带结构呈现平坦无散射和在导带强烈分散区域,表示准一维电子行为的组合。的自旋耦合常数由总能量映射到自旋哈密顿获得。链间耦合被发现是数量级比为大型和缩小毛孔的链内耦合小至少一个数量级。有趣的是,链内耦合改变符号并变得更强五次从大孔到窄孔结构去。作为这种MIL-47(Mn)的可为在过渡金属氧化物系统可调谐低维磁性独特的机会。

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