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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Synthesis, structure and properties of new layered oxyselenides Nd_2(Fe_(1-x)M_x)2Se_2O_3
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Synthesis, structure and properties of new layered oxyselenides Nd_2(Fe_(1-x)M_x)2Se_2O_3

机译:新型层状氧硒化物Nd_2(Fe_(1-x)M_x)2Se_2O_3的合成,结构与性能

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摘要

A new series of layered oxyselenides Nd_2(Fe_(1-x)Mn_x)_2Se_2O_3 (0 ≤ x≤ 0.5) was synthesized via solid state reaction method. Their structure and properties were investigated by the X-ray powder diffraction, magnetic bulk, electrical and thermal transport measurements along with specific heat experiments. The compounds crystallize in the layered tetragonal structure with I4/mmm space group and show semiconducting behavior. The large discrepancy between activation energy for conductivity, E_ρ (0.153-0.177 eV), and thermopower, E_s (7.0-14.8 meV), indicates the polaronic transport mechanism. Heat capacity and bulk magnetization indicate an increased ferromagnetic component of the long-range magnetic order and possible increased degree of frustration. Atomic disorder on Fe/Mn sites suppresses the temperature of the long-range order whereas intermediate alloys show a rich magnetic phase diagram.
机译:通过固相反应法合成了一系列新的层状氧硒化物Nd_2(Fe_(1-x)Mn_x)_2Se_2O_3(0≤x≤0.5)。通过X射线粉末衍射,磁体积,电和热传输测量以及比热实验研究了它们的结构和性能。化合物在具有I4 / mmm空间基团的分层四方结构中结晶并显示出半导体行为。电导率的活化能E_ρ(0.153-0.177 eV)和热电势E_s(7.0-14.8 meV)之间存在巨大差异,表明极化子的传输机理。热容和体磁化表明,长程磁阶的铁磁成分增加,而挫折感可能增加。 Fe / Mn位点上的原子无序抑制了长程有序温度,而中间合金显示出丰富的磁相图。

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