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Synthesis of dysprosium/Mn-Cu ferrite binary nanocomposite: Analysis of structural, morphological, dielectric, and optomagnetic properties

机译:镝/ Mn-Cu铁素体二元复合物的合成:结构,形态学,电介质和洋光磁性特性分析

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Manganese-copper ferrite (MCFO) and dysprosium (Dy)-doped manganese-copper ferrite nanocomposites (Mn0.5Cu0.5DyxFe2-xO4) (x = 0, 0.05, 0.10, and 0.15) were synthesized by sonochemical method. Crystal structure and the structural parameters of the MCFO were analyzed based on the doping concentration of Dy ion. It was observed that the average crystalline size of the synthesized nanocomposite decreases when the concentration of Dy increases. The existing spherical surface morphology of the MCFO and Dy-doped MCFO nanocomposites were obtained through scanning electron microscopy. In the UV spectrum, the pristine MCFO sample showed an absorbance peak at 743 nm whereas the absorbance values of Dy-doped ferrite nanocomposite considerably shifted (blue) toward a lower wavelength (231-222 nm). The dielectric parameters of all ferrite nanocomposites were studied in the frequency range of 100 Hz to 5 MHz. The dielectric spectrum revealed that dielectric constant and loss tangent decreased with increased doping concentration of Dy ion. The saturation magnetization also changed with Dy doping in MCFO. The impact of Dy on manganese-copper ferrite changed the optical, dielectric and magnetic properties of the prepared binary ferrite nanocomposite, which can be used for microwave-absorbing material applications.
机译:锰铜铁素体(MCFO)和镝(Dy) - 掺杂锰 - 铜铁氧体纳米复合材料(Mn0.5Cu0.5dyxFe2-XO4)(x = 0,0.05,0.10和0.15)被多位化学方法合成。基于Dy离子的掺杂浓度分析MCFO的晶体结构和MCFO的结构参数。观察到,当Dy浓度增加时,合成纳米复合材料的平均结晶尺寸降低。通过扫描电子显微镜获得MCFO和DOD掺杂MCFO纳米复合材料的现有球面形态。在UV光谱中,原始MCFO样品在743nm处显示吸光度峰,而Dy掺杂的铁氧体纳米复合材料的吸光度值显着地移位(蓝色)朝向下波长(231-222nm)。在100Hz至5MHz的频率范围内研究所有铁氧体纳米复合材料的介电参数。介电光谱显示,介电常数和损耗正切随着掺杂离子的掺杂浓度增加而降低。饱和磁化也随MCFO的掺杂而变化。 Dy在锰铜铁氧体上的影响改变了制备二元铁氧体纳米复合材料的光学,介电和磁性,可用于微波吸收材料应用。

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