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首页> 外文期刊>Journal of the American Chemical Society >Synthesis Of An Electromagnetic Wave Absorber For High-speed Wireless Communication
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Synthesis Of An Electromagnetic Wave Absorber For High-speed Wireless Communication

机译:高速无线通信用电磁波吸收体的合成

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Millimeter waves (30-300 GHz) are starting to be used in next generation high-speed wireless communications. To avoid electromagnetic interference in this wireless communication, finding a suitable electromagnetic wave absorber in the millimeter wave range is an urgent matter. In this work, we prepared a high-performance millimeter wave absorber composed of a series of aluminum-substituted £-iron oxide, ε-Al_xFe_(2-x)O_3, nanomagnets (0 ≤ x ≤ 0.40) with a particle size between 25 and 50 nm. The materials in this series have an orthorhombic crystal structure in the Pna2_1 space group, which has four nonequivalent Fe sites and Al ion that predominantly occupies the tetrahedral [FeO_4] site. The field-cooled magnetization curves showed that the T_C values were 448, 480, and 500 K for x = 0.40, 0.21, and 0, respectively. The magnetization versus external magnetic field showed that the coercive field H_C values at 300 K were 10.2, 14.9, and 22.5 kOe for x = 0.40, 0.21, and 0, respectively. The millimeter wave absorption properties were measured at room temperature by terahertz time domain spectroscopy. The frequencies of the absorption peaks for x = 0.40, 0.30, 0.21, 0.09, 0.06, and 0 were observed at 112, 125, 145, 162, 172, and 182 GHz, respectively. These absorptions are due to the natural resonance achieved by the large magnetic anisotropies in this series. Such frequencies are the highest ones for magnetic materials. Because aluminum is the third most abundant atom, aluminum-substituted ε-iron oxide is very economical, and thus these materials are advantageous for industrial applications.
机译:毫米波(30-300 GHz)开始用于下一代高速无线通信中。为了避免这种无线通信中的电磁干扰,在毫米波范围内找到合适的电磁波吸收器是当务之急。在这项工作中,我们制备了一种高性能毫米波吸收器,该吸收器由一系列铝取代的Fe-氧化铁,ε-Al_xFe_(2-x)O_3,纳米磁体(0≤x≤0.40)组成,粒径在25之间和50 nm。该系列中的材料在Pna2_1空间群中具有正交晶体结构,该结构具有四个非等价的Fe位和Al离子,它们主要占据四面体[FeO_4]位。场冷的磁化曲线表明,对于x = 0.40、0.21和0,T_C值分别为448、480和500K。磁化强度与外部磁场的关系表明,对于x = 0.40、0.21和0,在300 K下的矫顽场H_C值分别为10.2、14.9和22.5 kOe。通过太赫兹时域光谱法在室温下测量毫米波吸收特性。 x分别在112、125、145、145、162、172和182 GHz处观察到x = 0.40、0.30、0.21、0.09、0.06和0的吸收峰频率。这些吸收归因于该系列中较大的磁各向异性导致的自然共振。这样的频率是磁性材料的最高频率。因为铝是第三多的原子,所以铝取代的ε-氧化铁非常经济,因此这些材料对于工业应用是有利的。

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