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首页> 外文期刊>Angewandte Chemie >Dy-161 Time-Domain Synchrotron Mossbauer Spectroscopy for Investigating Single-Molecule Magnets Incorporating Dy Ions
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Dy-161 Time-Domain Synchrotron Mossbauer Spectroscopy for Investigating Single-Molecule Magnets Incorporating Dy Ions

机译:DY-161时域同步摩梭蛋白光谱,用于研究掺入Dy离子的单分子磁铁

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摘要

Time-domain synchrotron Mossbauer spectroscopy (SMS) based on the Mossbauer effect of Dy-161 has been used to investigate the magnetic properties of a Dy-III-based single-molecule magnet (SMM). The magnetic hyperfine field of [Dy(Cy3PO)(2)(H2O)(5)]Br-3 center dot 2 (Cy3PO)(2)H2O center dot 2EtOH is with B-0=582.3(5) T significantly larger than that of the free-ion Dy-III with a H-6(15/2) ground state. This difference is attributed to the influence of the coordinating ligands on the Fermi contact interaction between the s and 4f electrons of the Dy-III ion. This study demonstrates that Dy-161 SMS is an effective local probe of the influence of the coordinating ligands on the magnetic structure of Dy-containing compounds.
机译:基于DY-161的母动效应的时域同步摩梭频谱(SMS)用于研究基于DY-III的单分子磁体(SMM)的磁性。 [dy(cy3po)(2)(2)(h2O)(5)] Br-3中心点2(cy3po)(2)H2O中心点2 otoOh的磁性高血清磁场为B-0 = 582.3(5)T显着大于 具有H-6(15/2)地态的自由离子Dy-III。 这种差异归因于协调配体对Dy-III离子的S和4F电子之间的Fermi接触相互作用的影响。 该研究表明DY-161 SMS是拟合配体对含黄化合物的磁性结构对磁性结构的影响的有效局部探针。

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