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Low-Temperature Synthesis of Nanocrystalline Mn0.2Ni0.8Fe2O4 by Oxalate Precursor Route

机译:草酸盐前体路线低温合成纳米晶Mn0.2Ni0.8Fe2O4

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Manganese nickel ferrite (Mn0.2Ni0.8Fe2O4) powder was synthesized through oxalate precursor route. The effect of annealing temperature (400℃ - 1100℃) on the formation, crystalline size, morphology and magnetic properties was systematically studied. The resultant powders were investigated by thermal analyzer (TG-DTG-DSC), X-ray diffractometer (XRD), scanning electron microscopy (SEM) and vibrating sample magnetometer (VSM). Based on thermal analysis results, the oxalate mixture decomposed thermally in multisteps weight loss up to about 680℃. XRD indicated that Mn0.2Ni0.8Fe2O4 formed at much lower annealing temperature (≤400℃) but contained α-Fe2O3 impurity. The hematite phase decreased by increasing the annealing temperature. The lattice parameters were increased with increasing annealing temperature up to 1000℃. The average crystalline size increased by increasing the annealing temperature. Single well crystalline ferrite was obtained at 800℃with crystallite size about 109 nm. The saturation magnetization of the ferrites powders continuously increased with the increase in annealing temperature. Maximum saturation magnetization 48.2 emu/g was achieved for the formed Mn0.2Ni0.8Fe2O4 phase at annealing temperature 1100℃.
机译:通过草酸盐前驱体路线合成了锰铁酸锰(Mn0.2Ni0.8Fe2O4)粉末。系统地研究了退火温度(400℃-1100℃)对合金的形成,晶体尺寸,形貌和磁性能的影响。通过热分析仪(TG-DTG-DSC),X射线衍射仪(XRD),扫描电子显微镜(SEM)和振动样品磁强计(VSM)研究所得粉末。根据热分析结果,草酸盐混合物在多级失重下会热分解,直至约680℃。 X射线衍射表明,Mn0.2Ni0.8Fe2O4在较低的退火温度(≤400℃)下形成,但含有α-Fe2O3杂质。通过提高退火温度,赤铁矿相减少。晶格参数随着退火温度的升高而增加,最高至1000℃。平均晶体尺寸通过增加退火温度而增加。在800℃获得了单晶铁素体,晶粒尺寸约为109nm。随着退火温度的升高,铁氧体粉末的饱和磁化强度不断提高。退火温度为1100℃时,生成的Mn0.2Ni0.8Fe2O4相的最大饱和磁化强度达到48.2 emu / g。

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