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首页> 外文期刊>Journal of Electronic Materials >Effect of Microstructure and Magnetic Properties of Ba-Pb-Hexaferrite Particles on EMI Shielding Behavior of Ba-Pb-Hexaferrite-Polyaniline-Wax Nanocomposites
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Effect of Microstructure and Magnetic Properties of Ba-Pb-Hexaferrite Particles on EMI Shielding Behavior of Ba-Pb-Hexaferrite-Polyaniline-Wax Nanocomposites

机译:Ba-Pb-六己二酯颗粒微观结构和磁性特性对Ba-Pb-六己二酯 - 聚苯胺 - 蜡纳米复合材料的EMI屏蔽行为的影响

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We report that the microstructure, electrical and magnetic properties of the fillers play a very crucial role in synergistically enhancing absorption dominated electromagnetic interference (EMI) shielding in nanocomposites. We prepared nanocomposites by dispersing of varying microstructure and magnetic properties Barium-Lead hexaferrite (BaxPb1-xFe12O19; x=0.0, 0.4, 0.8 and 1.0) particles and polyaniline (PANI) (light weight conducting species) a in microwave transparent paraffin wax matrix. The EMI shielding behavior of the nanocomposites was studied in the 8-18 GHz frequency band. The hexaferrite powder samples used in the nanocomposites were synthesized by the sol-gel method followed by calcination at 1000 degrees C. The electron micrographs confirm that the pure Pb-hexaferrite sample (x=0) contains well defined hexagonal plate-like particles. With increase in Ba-content in the samples, the hexagonal particles transform to smaller spherical particles, and the magnetic properties such as coercivity and saturation magnetization change. These modifications in the morphology and magnetic properties of the samples facilitate high attenuation of microwave radiation in our developed nanocomposites. The conducting species (PANI) reflects the microwave from its surface but absorbs it through conduction-loss (Ohmic absorption), whereas the (non-conducting) magnetic Ba-Pb hexaferrite particles absorb the microwave through ferromagnetic resonance but scatter it from their surface due to impedance mismatch. The scattered waves normally increase the electromagnetic smog outside the specimen. To reduce this EM-smog, the Ba-Pb hexaferrite-PANI-Wax nanocomposites provide a synergy among all the electrical and magnetic properties, which leads to very high attenuation through absorption of the scattered electromagnetic wave. Our work demonstrates that the nanocomposites containing Ba-Pb hexaferrite particles are not only efficient in shielding microwave radiation but also help in controlling the electromagnetic-smog.
机译:我们报告中指出,微观结构,填料的电和磁特性发挥纳米复合材料中的增强协同吸收为主的电磁干扰(EMI)屏蔽了非常关键的作用。我们制备的纳米复合材料,通过改变微结构和磁特性的分散钡铅六方晶系铁氧体(BaxPb1-xFe12O19; X = 0.0,0.4,0.8和1.0)的颗粒和聚苯胺(PANI)(重量光传导物质)一在微波透明石蜡基质。纳米复合材料的EMI屏蔽行为在8-18千兆赫频带进行了研究。在纳米复合材料中使用的六方晶系铁氧体粉末样品通过溶胶 - 凝胶法接着进行煅烧在1000度C.合成的电子显微照片证实了纯的Pb-六方晶系铁氧体样品(X = 0)包含明确定义的平板状粒子六边形。随着样品中的Ba含量的增加,所述六角形的颗粒转化为更小的球形颗粒,以及磁特性如矫顽力和饱和磁化强度的变化。在样品的形貌和磁特性进行这些修饰以便于我们的发达纳米复合材料的微波辐射的高衰减。的导电性物质(PANI)反射来自其表面的微波而吸收它通过传导损失(欧姆吸收),而(非导通)磁性钡 - 铅六方晶系铁氧体颗粒从它们的表面吸收通过铁磁谐振但散射它的微波因阻抗不匹配。散射波通常增加样品外的电磁烟雾。为了减少这种EM-烟雾,钡 - 铅六方晶系铁氧体-PANI-蜡纳米复合材料提供所有的电性能和磁性能之间协同作用,这导致非常高的衰减通过所述散射电磁波的吸收。我们的工作表明,含Ba-铅六方晶系铁氧体颗粒纳米复合材料不仅在屏蔽微波辐射而且还帮助控制电磁-烟雾高效。

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