Kolev Svetoslav, Peneva Petya, Krezhov Kiril, Malakova Tanya, Ghelev Chavdar, Koutzarova Tatyana, Kovacheva Daniela, Vertruyen Benedicte, Closset Raphael, Maria Tran Lan, Zaleski Andrzej
Institute of Electronics, Bulgarian Academy of Sciences, 72 Tsarigradsko Chaussee, 1784 Sofia, Bulgaria.
Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, Academy Georgi Bonchev Street, bld. 11, 1113 Sofia, Bulgaria.
Materials (Basel). 2020 May 20;13(10):2355. doi: 10.3390/ma13102355.
We report results on the structural and microwave properties and magnetic phase transitions in polycrystalline SrCoFeO hexaferrite synthesized by sol-gel auto-combustion and acting as a filler in a composite microwave absorbing material. The zero-field-cooled (ZFC) and field-cooled (FC) magnetization curves revealed a change in the magnetization behavior at 293 K. The reflection losses in the 1-20 GHz range of the SrCoFeO powder dispersed homogeneously in a polymer matrix of silicon rubber were investigated in both the absence and presence of a magnetic field. In the latter case, a dramatic rise in the attenuation was observed. The microwave reflection losses reached the maximum value of 32.63 dB at 17.29 GHz in the Ku-band. The sensitivity of the microwave properties of the composite material to the external magnetic field was manifested by the appearance of new reflection losses maxima. At a fixed thickness of the composite, the attenuation peak frequency can be adjusted to a certain value either by changing the filling density or by applying an external magnetic field.
我们报告了通过溶胶-凝胶自燃法合成的多晶SrCoFeO六铁氧体的结构和微波特性以及磁相变结果,该六铁氧体在复合微波吸收材料中用作填料。零场冷却(ZFC)和场冷却(FC)磁化曲线显示在293K时磁化行为发生了变化。研究了均匀分散在硅橡胶聚合物基体中的SrCoFeO粉末在1-20GHz范围内无磁场和有磁场情况下的反射损耗。在后一种情况下,观察到衰减急剧增加。在Ku波段,微波反射损耗在17.29GHz时达到最大值32.63dB。复合材料微波特性对外加磁场的敏感性表现为出现新的反射损耗最大值。在复合材料固定厚度的情况下,通过改变填充密度或施加外部磁场,可以将衰减峰值频率调整到一定值。