利用 57Fe 内场 NMR 研究铝和钕的替代对钇铁石榴石结构和磁性能的影响

IF 3.4 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Solid State Sciences Pub Date : 2024-08-13 DOI:10.1016/j.solidstatesciences.2024.107658
Akash Daniel Georgi , G. Srinivas Reddy , K.P. Ramesh , K.J. Mallikarjunaiah
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引用次数: 0

摘要

研究了非磁性铝和磁性钕替代钇铁石榴石样品(Y3-xAlxFe5O12 和 Y3-nNdnFe5O12)的结构和磁性能。粉末样品采用自燃路线合成。样品的里特维尔德细化分析证实了石榴石相的存在,并显示了极少量杂质相的存在,特别是透辉石和赤铁矿。用 Al 替代 Y3Fe5O12 会导致饱和磁化率线性下降,而用 Nd 替代则会导致非线性变化。与此相对应,钇铁榴石样品中的内场核磁共振(IFNMR)谱图显示,当 Al 被取代时,峰值频率下移,而当 Nd 被取代时,强度显著降低。由于铝离子的离子半径较小,因此除了十二面体位置外,铝离子还占据了晶格中的四面体或八面体位置。这导致来自四面体和八面体位置的 Fe3+ 离子的超频场减小。另一方面,钕离子占据十二面体位点,预计不会影响铁离子。同时,在钕替代的 IFNMR 光谱中没有观察到明显的峰值移动。然而,由于钕离子的离子半径比被其取代的钇离子大,因此钕离子的取代会在晶格中产生应变。这种应变导致四面体和八面体位点紊乱,影响了 57Fe 信号强度。从 VSM 分析中观察到的磁性能也可以从观察到的 57Fe IFNMR 光谱变化中得到解释。X 射线光电子能谱(XPS)主要用于探索样品中铁 2p 态的自旋轨道分裂。
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Effect of substitution of aluminium and neodymium on structural and magnetic properties of yttrium iron garnet studied using 57Fe internal field NMR

The structural and magnetic properties of non-magnetic aluminium and magnetic neodymium substituted yttrium iron garnet samples (Y3-xAlxFe5O12 and Y3-nNdnFe5O12) were investigated. Powder samples were synthesized using auto combustion route. The Rietveld refinement analysis of the samples confirmed the presence of the garnet phase and showed presence of minimal impurity phases, specifically perovskite and hematite. Substitution on Y3Fe5O12 with Al resulted in a linear decrease in saturation magnetization, while Nd substitution showed a non-linear change. In accordance with this the Internal Field Nuclear Magnetic Resonance (IFNMR) spectrum exhibited a downward shift in peak frequency when Al was substituted, and a significant reduction in intensity with Nd substitution in yttrium iron garnet samples. Aluminium ions take up either tetrahedral or octahedral positions in the lattice, apart from the dodecahedral site, because of their smaller ionic radii. This causes a decrease in the hyperfine field that originates from Fe3+ ions in tetrahedral and octahedral sites. On the other hand, neodymium ions occupy dodecahedral sites and are expected not to affect Fe ions. Concurrently, an observable peak shift was not observed in the IFNMR spectrum for Nd substitution. However, Nd substitution introduced strain in the lattice due to their larger ionic radii compared to yttrium, which they replace. This strain causes disorder in tetrahedral and octahedral sites and affects 57Fe signal intensity. The magnetic properties observed from VSM analysis is also interpreted in view of observed changes in the 57Fe IFNMR spectrum. X-ray Photoelectron spectroscopy (XPS) was employed mainly to explore spin orbit splitting of Fe 2p state in the samples.

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来源期刊
Solid State Sciences
Solid State Sciences 化学-无机化学与核化学
CiteScore
6.60
自引率
2.90%
发文量
214
审稿时长
27 days
期刊介绍: Solid State Sciences is the journal for researchers from the broad solid state chemistry and physics community. It publishes key articles on all aspects of solid state synthesis, structure-property relationships, theory and functionalities, in relation with experiments. Key topics for stand-alone papers and special issues: -Novel ways of synthesis, inorganic functional materials, including porous and glassy materials, hybrid organic-inorganic compounds and nanomaterials -Physical properties, emphasizing but not limited to the electrical, magnetical and optical features -Materials related to information technology and energy and environmental sciences. The journal publishes feature articles from experts in the field upon invitation. Solid State Sciences - your gateway to energy-related materials.
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