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Enhancing the dual magnetic and optical properties of co-doped cerium oxide nanostructures

机译:增强共掺杂氧化铈纳米结构的双重磁性和光学性质

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In spite of the potential biomedical application, ceria nanoparticles suffer from poor optical and magnetic properties. Here we report the structural, optical and magnetic properties of iron (8 at%) and europium (1 at%) co-doped ceria nanoparticles with respect to annealing temperature. A cubic fluorite structure of ceria was observed on co-doping but an additional alpha-Fe2O3 phase emerged on annealing at 700 degrees C and above. An increase in the mean crystallite size from 6.5 to 37 nm and a corresponding reduction in strain was observed with annealing temperature. Surface area and scanning electron microscopic studies indicated a porous structure which became dense upon annealing. Raman spectroscopic studies reveal the presence of oxygen vacancy defects arising from the combination of intrinsic and extrinsic defects due to the presence of Ce3+ and dopant, respectively. X-ray photoelectron spectroscopic results confirm the oxidation of Ce3+ to Ce4+ state while the trivalent state of iron was retained on annealing at higher temperatures. On annealing above 500 degrees C, reduction in defect concentration improved the emission intensity primarily through magnetic dipole transition. A typical ferromagnetic behaviour was noticed in all the samples and shift a from soft to hard magnetic behaviour upon annealing.
机译:尽管有潜在的生物医学应用,但氧化铈纳米颗粒仍具有较差的光学和磁性。在这里,我们报告了相对于退火温度,铁(8at%)和euro(1at%)共掺杂的二氧化铈纳米颗粒的结构,光学和磁性。在共掺杂时观察到二氧化铈的立方萤石结构,但在700℃及更高的温度下退火后,又出现了另外的α-Fe2O3相。随着退火温度观察到平均晶粒尺寸从6.5nm增加到37nm,并且应变相应降低。表面积和扫描电子显微镜研究表明,多孔结构在退火后变得致密。拉曼光谱研究表明,由于Ce3 +和掺杂剂的存在,内在和外在缺陷的结合会导致氧空位缺陷的存在。 X射线光电子能谱结果证实了Ce3 +氧化为Ce4 +态,而铁的三价态在较高温度下退火时得以保留。在高于500摄氏度的退火条件下,缺陷浓度的降低主要通过磁偶极跃迁提高了发射强度。在所有样品中均观察到典型的铁磁行为,并且在退火时从软磁行为转变为硬磁行为。

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