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Core-Shell Magnetic Structure of La1–xSrxMnO $_{3+delta }$ Nanocrystallites

机译:La1-xSrxMnO $ _ {3 + delta} $纳米微晶的核-壳磁结构

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Magnetic La1-xSrxMnO3+δ particles of composition x = 0.36 and average size of 40 nm have been prepared from the oxidizing flux of sodium nitrite at ≈500 °C. Detailed magnetic and neutron diffraction measurements have been performed on raw nanoparticles and particles subjected to mild acid leaching. Based on these experiments and X-ray fluorescence analysis of the respective products, we conclude on the core-shell magnetic structure of the molten-salt-prepared particles, consisting of ferromagnetic (FM) ordering in the interior and A-type antiferromagnetic (AFM) ordering in the intermediate shell just below the outermost, magnetically disordered layer. The reason for such complex arrangement, unprecedented in sol-gel-prepared manganite nanoparticles of the same composition, is in a certain radial distribution of La, Sr cations, and an increased oxygen stoichiometry related to the presence of extra oxygen atoms covalently bound at the particle surface. The acid leaching, performed by consecutive treatments with ice-cold solutions of dilute nitric acid and citric acid, removes the overoxidized surface and some outer Sr-richer layers, decreasing the composition to x = 0.32. As a result, the AFM ordering is almost completely suppressed while FM ordering is preserved in the leached nanoparticles.
机译:通过氧化制备了组成为x = 0.36,平均尺寸为40 nm的磁性La 1-x Sr x MnO 3 +δ粒子≈500°C的亚硝酸钠通量。详细的磁和中子衍射测量已对粗颗粒和经过温和酸浸的颗粒进行了测量。基于这些实验和相应产品的X射线荧光分析,我们得出了熔融盐制备的颗粒的核-壳磁性结构的结论,该结构由内部的铁磁(FM)有序和A型反铁磁(AFM)组成)在最外面的磁无序层下面的中间壳中排序。这种复杂排列的原因是在相同组成的溶胶凝胶制备的锰矿纳米颗粒中前所未有的,这是由于La,Sr阳离子在一定的径向分布以及与氧原子共价键合的氧原子化学计量增加有关。粒子表面。通过用稀硝酸和柠檬酸的冰冷溶液连续处理来进行酸浸,可以去除过氧化的表面和一些富Sr的外层,从而使组成降至x = 0.32。结果,AFM有序几乎被完全抑制,而FM有序则保留在浸出的纳米颗粒中。

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