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Tunable microwave absorbing nano-material for X-band applications

机译:适用于X波段应用的可调谐微波吸收纳米材料

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The effect of rare earth elements substitution in Sr_(1.96)RE_(0.04)Co_2Fe_(27.80)Mn_(0.2)O_(46) (RE=Ce, Gd, Nd, La and Sm) X-type hexagonal ferrites prepared by using sol gel autocombustion method was studied. The XRD and FTIR analysis show the single phase of the prepared material. The lattice constants a (A) and c (A) varies with the additives. The particle size measured by Scherer formula for all the samples varies in the range of 54-100 nm and confirmed by the TEM analysis. The average grain size measured by SEM analysis lies in the range of 0.672-1.01 μm for all the samples. The Gd-substituted ferrite has higher value of coercivity (526.06 G) among all the samples which could be a good material for longitudinal recording media. The results also indicate that the Gd-substituted sample has maximum reflection loss of - 25.2 dB at 11.878 GHz, can exhibit the best microwave absorption properties among all the substituted samples. Furthermore, the minimum value of reflection loss shifts towards the lower and higher frequencies with the substitution of rare earth elements which confirms that the microwave absorption properties can be tuned with the substitution of rare earth elements in pure ferrites. The peak value of attenuation constant at higher frequency agrees well the reflection loss data.
机译:用溶胶制备的Sr_(1.96)RE_(0.04)Co_2Fe_(27.80)Mn_(0.2)O_(46)(RE = Ce,Gd,Nd,La和Sm)X型六角铁氧体中稀土元素替代的影响研究了凝胶自燃方法。 XRD和FTIR分析显示了所制备材料的单相。晶格常数a(A)和c(A)随添加剂而变化。通过Scherer公式测量的所有样品的粒径在54-100 nm范围内变化,并通过TEM分析证实。通过SEM分析测得的所有样品的平均晶粒尺寸在0.672-1.01μm的范围内。在所有样品中,Gd取代的铁氧体具有较高的矫顽力值(526.06 G),这可能是纵向记录介质的良好材料。结果还表明,Gd取代的样品在11.878 GHz处的最大反射损耗为-25.2 dB,可以在所有取代的样品中表现出最佳的微波吸收性能。此外,反射损耗的最小值随着稀土元素的替换而朝着更低和更高的频率偏移,这证实了可以通过在纯铁氧体中替换稀土元素来调节微波吸收特性。较高频率下的衰减常数峰值与反射损耗数据非常吻合。

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