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首页> 外文期刊>Physics Letters, A >Positron annihilation and Mossbauer spectroscopic studies of In3+ substitution effects in bulk and nanocrystalline MgMn0.1Fe1.9-xInxO4
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Positron annihilation and Mossbauer spectroscopic studies of In3+ substitution effects in bulk and nanocrystalline MgMn0.1Fe1.9-xInxO4

机译:正电子an没和Mossbauer光谱研究块状和纳米MgMn0.1Fe1.9-xInxO4中In3 +的取代作用

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Positron lifetime and Mossbauer spectroscopic studies were carried out on MgMn0.1Fe1.9-xInxO4 spinel ferrite samples, both in bulk and nanocrystalline forms. The positron lifetimes at various substituted In3+ concentrations suggested changes in the predominant positron trapping sites. In the initial stage of substitution when In3+ ions were supposed to migrate to tetrahedral sites, many of these sites were left as vacancies and positrons were trapped in them. At higher concentrations of In3+, similar situation arises in the case of the octahedral sites. The same qualitative trend is observed when the sample is ball-milled to nanometre dimensions. Quantitatively, however, the measured positron lifetimes are larger than those for the bulk, signifying the annihilations at the grain surfaces and interfaces. From the Mossbauer studies, one observes changes in the electron density, electric field gradient and hyperfine field for nanoparticles in comparison to the bulk samples. (C) 2004 Elsevier B.V. All rights reserved.
机译:在块状和纳米晶形式的MgMn0.1Fe1.9-xInxO4尖晶石铁氧体样品上进行了正电子寿命和Mossbauer光谱研究。在各种取代的In3 +浓度下的正电子寿命表明,主要的正电子俘获位点发生了变化。在取代的最初阶段,当In3 +离子应迁移到四面体位点时,这些位点中的许多由于空位而被保留,正电子被困在其中。在较高的In3 +浓度下,八面体位点也会出现类似情况。当样品球磨至纳米尺寸时,观察到相同的定性趋势。但是,从数量上看,测得的正电子寿命大于大块的正电子寿命,这意味着在晶粒表面和界面处的interfaces灭。根据Mossbauer的研究,与大量样品相比,人们观察到纳米粒子的电子密度,电场梯度和超精细场的变化。 (C)2004 Elsevier B.V.保留所有权利。

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