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首页> 外文期刊>Chemistry: A European journal >Tuning the Magnetic Properties of LixCrTi0.25Se2 (0.03x0.7) by Directed Deintercalation of Lithium
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Tuning the Magnetic Properties of LixCrTi0.25Se2 (0.03x0.7) by Directed Deintercalation of Lithium

机译:通过锂的直接脱嵌调整LixCrTi0.25Se2(0.03x0.7)的磁性

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X-ray diffraction (XRD), in situ energy-dispersive X-ray diffraction(EDXRD), X-ray absorption near-edge structure (XANES), extended X-ray absorption fine structure (EXAFS), and magnetic measurements were applied to investigate the effects of lithium deintercalation on pseudola yered Li0.70CrTi0.25Se2. A detailed picture ofstructural changes during the deintercalation process was obtained by combining the results of EDXRD and EXAFS. Removal of Li from the hostCguest complex leads to anisotropic contraction of the unit cell with stronger impact on the c axis, which is the stacking axis of the layers. The EDXRD experiments evidence that the shrinkage of the lattice parameters with decreasing xLi in LixCrTi0.25Se2 is nonlinear in the beginning and then becomes linear. Analysis of the EXAFS spectra clearly shows that the Cr/TiSe distances are affected in a different manner by Li removal. The CrSe bond lengths decrease, whereas the Ti-Se bonds lengthen when the Li content is reduced, which is consistent with XRD data. Magnetic measurements reveal a change from predominantly antiferromagnetic exchange (qp=300 K) interactions for the pristine material to ferromagnetic exchange interactions (q=25 K) for the fully intercalated material. Thus, the magnetic properties can be altered under ambient conditions by directed adjustment of the dominant magnetic exchange. The unusual magnetic behavior can be explained on the basis of the variation of the metalCmetal distances and the Cr-Se-Cr angles with x, which were determined by Rietveld refinements. Owing to competing ferromagnetic and antiferromagnetic exchange interactions and disorder, the magnetic ground state of the intercalated materials is characterized by spin-glass or spin-glass-like behavior.
机译:X射线衍射(XRD),原位能量色散X射线衍射(EDXRD),X射线吸收近边缘结构(XANES),扩展X射线吸收精细结构(EXAFS)以及磁测量被应用于研究了锂脱嵌对假层状Li0.70CrTi0.25Se2的影响。通过结合EDXRD和EXAFS的结果获得了脱嵌过程中结构变化的详细图片。 Li从主体客体复合物中的除去导致晶胞的各向异性收缩,并对c轴(层的堆叠轴)产生更大的影响。 EDXRD实验证明,随着LixCrTi0.25Se2中xLi的减小,晶格参数的收缩在开始时是非线性的,然后变为线性。对EXAFS光谱的分析清楚地表明,去除Li会对Cr / TiSe距离产生不同的影响。当Li含量降低时,CrSe键长度减小,而Ti-Se键长度增加,这与XRD数据一致。磁性测量揭示了原始材料的主要反铁磁交换(qp = 300 K)相互作用到完全插层材料的铁磁交换相互作用(q = 25 K)的变化。因此,可以在环境条件下通过直接调节主要的磁性交换来改变磁性。可以根据由Rietveld改进确定的metalCmetal距离和Cr-Se-Cr角随x的变化来解释异常磁行为。由于铁磁性和反铁磁性交换相互作用和无序性,插层材料的磁性基态以自旋玻璃或类自旋玻璃的行为为特征。

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