Attanayake Supun B, Chanda Amit, Hulse Thomas, Das Raja, Phan Manh-Huong, Srikanth Hariharan
Department of Physics, University of South Florida, Tampa, FL 33620, USA.
Department of Physics & Astronomy, University of Louisville, Louisville, KY 40208, USA.
Nanomaterials (Basel). 2023 Apr 12;13(8):1340. doi: 10.3390/nano13081340.
The inherent existence of multi phases in iron oxide nanostructures highlights the significance of them being investigated deliberately to understand and possibly control the phases. Here, the effects of annealing at 250 °C with a variable duration on the bulk magnetic and structural properties of high aspect ratio biphase iron oxide nanorods with ferrimagnetic FeO and antiferromagnetic α-FeO are explored. Increasing annealing time under a free flow of oxygen enhanced the α-FeO volume fraction and improved the crystallinity of the FeO phase, identified in changes in the magnetization as a function of annealing time. A critical annealing time of approximately 3 h maximized the presence of both phases, as observed via an enhancement in the magnetization and an interfacial pinning effect. This is attributed to disordered spins separating the magnetically distinct phases which tend to align with the application of a magnetic field at high temperatures. The increased antiferromagnetic phase can be distinguished due to the field-induced metamagnetic transitions observed in structures annealed for more than 3 h and was especially prominent in the 9 h annealed sample. Our controlled study in determining the changes in volume fractions with annealing time will enable precise control over phase tunability in iron oxide nanorods, allowing custom-made phase volume fractions in different applications ranging from spintronics to biomedical applications.
氧化铁纳米结构中多相的固有存在凸显了对其进行深入研究以理解并可能控制这些相的重要性。在此,我们探究了在250°C下进行不同时长退火对具有亚铁磁性FeO和反铁磁性α-Fe₂O₃的高纵横比双相氧化铁纳米棒的体磁性能和结构性能的影响。在自由氧流条件下增加退火时间会提高α-Fe₂O₃的体积分数,并改善Fe₃O₄相的结晶度,这可通过磁化强度随退火时间的变化得以确定。通过磁化强度的增强和界面钉扎效应观察到,约3小时的临界退火时间使两相的存在达到最大化。这归因于无序自旋分隔了磁性不同的相,这些相在高温下倾向于在磁场作用下排列。由于在退火超过3小时的结构中观察到场致变磁转变,增加的反铁磁相得以区分,并且在9小时退火的样品中尤为显著。我们关于确定体积分数随退火时间变化的对照研究将能够精确控制氧化铁纳米棒中的相可调性,从而在从自旋电子学到生物医学应用等不同应用中实现定制的相体积分数。