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Structural and magnetic properties of the iron substituted lithium-manganese spinel oxides

机译:铁取代的锂锰尖晶石氧化物的结构和磁性

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Most studies on the lithium-manganese oxide as a cathode material have concentrated on the stabilization of the cubic spinel structure, mainly by doping other transition metal ions into LiMn2O4 lattice. Partial substitution of Fe3+ ions for Mn3+ restrains the Jahn-Teller effect, owing to the reduction of Mn3+/Mn4+ ratio. In LiFe0.1Mn1.9O4 spinel oxide the phase transitions from cubic to orthorhombic and/or tetragonal structure, appearing for LiMn2O4 below the room temperature, may be totally suppressed. The changes in stoichiometry of LiFexMn2-xO4 system, modify the sequence of phase transitions and lower the transition temperature. A superexchange magnetic interaction between the Mn ions via oxygen atoms alters, with the Fe3+-content in LixMn3-xO4 increasing from x = 0.0-0.1, showing the antiferromagnetic ordering at very low temperature. The Neel point increases from 7 to 27 K. Effect of Fe3+ ions substitution in the LiFexMn2-xO4 system on its low-temperature structural phase transitions, have been investigated using high-resolution synchrotron X-ray powder diffraction, neutron powder diffraction and the magnetic susceptibility measurements. Divergences appear in the interpretation of magnetic structure on the basis of experimental results, acquired from neutron diffraction data, and obtained from the direct current susceptibility measurements. (c) 2005 Elsevier SAS. All rights reserved.
机译:关于锂锰氧化物作为阴极材料的大多数研究都集中在立方尖晶石结构的稳定化上,主要是通过将其他过渡金属离子掺杂到LiMn2O4晶格中来实现的。由于Mn3 + / Mn4 +比例的降低,用Fe3 +离子部分替代Mn3 +会抑制Jahn-Teller效应。在LiFe0.1Mn1.9O4尖晶石氧化物中,在室温以下的LiMn2O4中出现的从立方到正交和/或四方结构的相变可以被完全抑制。 LiFexMn2-xO4系统化学计量的变化,改变了相变的顺序并降低了转变温度。 Mn离子之间通过氧原子进行的超交换磁性相互作用发生了变化,LixMn3-xO4中的Fe3 +含量从x = 0.0-0.1增加,表明在非常低的温度下反铁磁有序。 Neel点从7 K增加到27K。使用高分辨率同步加速器X射线粉末衍射,中子粉末衍射和磁学方法研究了LiFexMn2-xO4系统中Fe3 +离子取代对其低温结构相变的影响。磁化率测量。根据实验结果,从中子衍射数据中获得并从直流磁化率测量中获得的结果,在磁结构的解释中出现了分歧。 (c)2005 Elsevier SAS。版权所有。

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