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Characterization of Microwave Absorber Material Based on Strontium Samarium Ferrite Produced by Hybrid Sol-Gel Method

机译:基于杂交溶胶 - 凝胶法生产的基于锶钐铁素体的微波吸收材料的表征

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Several studies have been carried out to attain microwave absorber materials to reduce the level of exposure of electromagnetic waves that can damage various electronic devices and disrupt human health. This study aims to determine the characterization of microwave absorber material of strontium ferrite with samarium doping and made by using the hybrid sol-gel method, which is a combination of sol-gel and solid-state reaction. The initial stage was to process Fe_3O_4 into Fe(NO_3)_3 and then mix it with Sr(NO_3)_2 and Sm_2O_3. The mixture was made into a sol and then heated into a gel. After that, the sample was calcined to become powder. Then the sample powder is compacted and sintered at a temperature of 1100°C. The XRD, VSM, and VNA characterization results show that the addition of samarium doping affects changes in microstructure, particle size, and magnetic properties. The final results show the formation of four phases, namely SrFe_(12)O_(19) (hexagonal), Sr_2FeO_4 (tetragonal), FeSmO_3 (orthorhombic) and Sm_2Fe_(17) (rhombohedral) which have particle sizes of 21-23 nm and susceptibility values of (3.5-7.3) × 10~(-6) m~3/kg. Strontium ferrite samples with 0.15% mol of samarium doping concentration have the best microwave absorption ability of -19.523 dB at a frequency of 10.74 GHz.
机译:已经进行了几项研究以获得微波吸收材料,以减少可能损坏各种电子设备并破坏人类健康的电磁波暴露水平。本研究旨在确定具有钐掺杂的锶铁氧体的微波吸收材料的表征,并通过使用杂化溶胶 - 凝胶法制备,这是溶胶 - 凝胶和固态反应的组合。初始阶段是将FE_3O_4处理到FE(NO_3)_3中,然后将其与SR(NO_3)_2和SM_2O_3混合。将混合物制成溶胶,然后加热到凝胶中。之后,将样品煅烧以成为粉末。然后将样品粉末压实并在1100℃的温度下烧结。 XRD,VSM和VNA表征结果表明,添加钐掺杂会影响微观结构,粒度和磁性的变化。最终结果显示了四个阶段的形成,即SRFE_(12)O_(19)(六边形),SR_2FeO_4(四方),FesmO_3(正交)和SM_2FE_(17)(菱形鼠标),其具有21-23nm的粒度和(3.5-7.3)×10〜(-6)m〜3 / kg的易感值值。锶铁氧体样品具有0.15%摩尔钐掺杂浓度的最佳微波吸收能力为-19.523dB,频率为10.74GHz。

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