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Tuning the formation and functionalities of ultrafine CoFe2O4 nanocrystals via interfacial coherent strain

机译:调优的形成和功能超细CoFe2O4通过界面纳米晶体连贯的应变

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Complex oxide nanocrystals with a spinel structure show their remarkable optical, electronic, mechanical, thermal, and magnetic properties. In this study, we present a simple yet versatile strategy to grow self-assembled epitaxial CoFe2O4 nanocrystals with well-controlled size (less than 10 nm) and single orientation. CoFe2O4 nanocrystals were fabricated via phase separation in a BiFeO3-CoF2O4 ultrathin film by pulsed laser deposition. The coherent strain at the BiFeO3-CoF2O4 interface suppressed the growth of the nanocrystals regardless of substrate temperatures. This strain also resulted in the ferromagnetic anisotropy and interesting conducting behaviors of ultrafine CFO nanocrystals.
机译:复杂氧化物纳米晶体具有尖晶石结构展示他们的非凡的光学、电子、机械、热、磁特性。这项研究中,我们提出一个简单而通用的自组装生长外延CoFe2O4策略与控制纳米晶体大小(不到10 nm)和单一取向。通过相分离纳米晶体是捏造的通过脉冲激光在BiFeO3-CoF2O4超薄薄膜沉积。BiFeO3-CoF2O4接口抑制的增长纳米晶体无论衬底温度。铁磁各向异性和有趣的进行超细首席财务官的行为纳米晶体。

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