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Structure and electromagnetic properties of single-crystalline Fe3O4 hollow nanospheres

机译:Fe3O4单晶空心纳米球的结构和电磁性能

摘要

Magnetite (Fe3O4) hollow nanospheres with an average diameter of 300 nm and an average shell thickness of 40 nm were synthesized by a surfactant-free solvothermal reduction method, and their structure and electromagnetic (EM) properties were investigated. The Fe3O4 hollow nanospheres showed single-crystalline features along the [111] crystal growth direction and a ferrimagnetic behavior at room temperature. The Fe3O4 hollow nanosphere/paraffin composites exhibited a flatter response in the real complex relative permittivity (epsilon') and a lower value of -0.5 in the imaginary complex relative permittivity (epsilon") in comparison with other Fe3O4-based nanomaterials because of the enhanced electrical resistivity. Their imaginary complex relative permeability (mu") displayed a resonance peak at -4 GHz and a negative value up to -0.03 in the 17.2-18 GHz range due to the dissipation of EM energy in the cavity of the hollow nanospheres. Their reflection loss (RL) exceeded -10 dB from 3.1 to 10.1 GHz at a thickness of 2.6-5 mm and attended an optimal value of -43.5 dB at 4 GHz at 5 mm thickness as a result of an effective complementation between the dielectric and magnetic losses.
机译:采用无表面活性剂的溶剂热还原法合成了平均直径为300 nm,平均壳厚度为40 nm的磁铁矿(Fe3O4)空心纳米球,并对其结构和电磁性能进行了研究。 Fe3O4空心纳米球沿[111]晶体生长方向显示出单晶特征,并在室温下表现出亚铁磁行为。与其他基于Fe3O4的纳米材料相比,Fe3O4中空纳米球/石蜡复合材料在实际复数相对介电常数(ε')中表现出较平坦的响应,而在虚构的复数相对介电常数(epsilon')中则表现出较低的-0.5值由于中空纳米球腔中的EM能量消散,它们的虚复相对磁导率(μ“)在-4 GHz处显示出共振峰,在17.2-18 GHz范围内显示出负值,最高为-0.03。在2.6-5 mm的厚度下,它们从3.1到10.1 GHz的反射损耗(RL)超过-10 dB,在4 GHz下在5 mm的厚度下,其反射损耗(-43.5 dB)达到了最佳值-43.5 dB磁损耗。

著录项

  • 作者

    Zhang Y; Or SW; Zhang Z;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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