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首页> 外文期刊>Hyperfine Interactions >Spin-glass behavior and magnetic splitting in molecular magnetic materials {[N(n-C4H9)4][MIIFeIII(C2O4)3]}n (M = Co, Mn)
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Spin-glass behavior and magnetic splitting in molecular magnetic materials {[N(n-C4H9)4][MIIFeIII(C2O4)3]}n (M = Co, Mn)

机译:分子磁性材料{[N(n-C4H9)4] [MIIFeIII(C2O4)3]} n(M = Co,Mn)的自旋玻璃行为和磁分裂

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摘要

The mixed valence character and the antiferromagnetic coupling in the molecular magnetic materials {[N(n-C4H9)4][MIIFeIII(C2O4)3]}n (M = Co, Mn) were investigated by Mössbauer spectroscopy and magnetic measurements. In the material {[N(n-C4H9)4][CoFe(C2O4)3]}n, the appearence of the spin-glass phase transition temperature and the magnetic phase transition under zero-field-cooled AC magnetic measurements were studied in the temperature range 5–100 K. In the Mössbauer spectra of {[N(n-C4H9)4][MnFe(C2O4)3]} a magnetic splitting was observed below 30 K. The appearance of the magnetic splitting indicates the occurrence of magnetic ordering in this complex. The hyperfine parameters show that the electronic state of iron is high-spin Fe3+.
机译:分子磁性材料{[N(n-C4H9)4] [MIIFeIII(C2O4)3]} n(M = Co,Mn)中的混合价态特征和反铁磁耦合通过Mössbauer光谱学和磁性测量研究。在材料{[N(n-C4H9)4] [CoFe(C2O4)3]} n中,研究了自旋玻璃相变温度和零场冷交流磁测量下磁相变的出现。温度范围5-100K。在{[N(n-C4H9)4] [MnFe(C2O4)3]}的Mössbauer光谱中观察到30 K以下的磁裂。磁裂的出现表明发生了如此复杂的磁性排序。超细参数表明铁的电子态为高自旋Fe3 +。

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