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Enhanced Structural and Magnetic Coupling in a Mesocrystal-Assisted Nanocomposite

机译:介晶辅助纳米复合材料中增强的结构和磁耦合

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Benefiting from the advances made in well-controlled materials synthesis techniques, nanocomposites have drawn considerable attention due to their enthralling physics and functionalities. In this work, we report a new heteroepitaxial mesocrystalperovskite nanocomposite, (NiFe2O4)(0.33):(La0.67Ca0.33MnO3)(0.67). Elaborate structural studies revealed that tiny NiFe2O4 nanocrystals aggregate into ordered octahedral mesocrystal arrays with {111} facets together with a concomitant structural phase transition of the La0.67Ca0.33MnO3 matrix upon postannealing process. Combined magnetic and X-ray absorption spectroscopic measurements show significant enhancement in the magnetic properties at room temperature due to the structural evolution of magnetic NiFe2O4 and the consequent magnetic coupling at the heterointerfaces mediating via well connected octahedrons of Mn-O-6 in La0.67Ca0.33MnO3 and (Ni,Fe)-O-6 in NiFe2O4. This work demonstrates an approach to manipulate the exciting physical properties of material systems by integrating desired functionalities of the constituents via synthesis of a self-assembled mesocrystal embedded nanocomposite system.
机译:得益于良好控制的材料合成技术的进步,纳米复合材料因其引人入胜的物理和功能性而备受关注。在这项工作中,我们报告了一种新的异质外延介晶钙钛矿纳米复合材料,(NiFe2O4)(0.33):( La0.67Ca0.33MnO3)(0.67)。详尽的结构研究表明,微小的NiFe2O4纳米晶体聚集成具有{111}晶面的有序八面体中晶阵列,并伴随退火后的La0.67Ca0.33MnO3基体结构相变。组合的磁吸收和X射线吸收光谱测量结果显示,由于磁性NiFe2O4的结构演变以及由此导致的杂化界面上的磁耦合,通过La0.67Ca0中的良好连接的Mn-O-6八面体介导,异质界面处的磁耦合显着增强。 NiFe2O4中含有0.33MnO3和(Ni,Fe)-O-6。这项工作演示了一种方法,该方法通过合成自组装的介晶嵌入式纳米复合材料系统,通过整合所需的成分功能来控制材料系统的令人兴奋的物理性能。

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