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首页> 外文期刊>Nanoscale >Arc-discharge synthesis of nitrogen-doped C embedded TiCN nanocubes with tunable dielectric/magnetic properties for electromagnetic absorbing applications
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Arc-discharge synthesis of nitrogen-doped C embedded TiCN nanocubes with tunable dielectric/magnetic properties for electromagnetic absorbing applications

机译:电弧放电合成nitrogen-doped C嵌入式TiCN nanocubes可调电介质/磁性电磁吸收应用程序

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摘要

The development of novel composites consisting of ceramic and C materials to alleviate increasingly serious electromagnetic radiation is of great significance in the microwave absorption (MA) field, considering their superior anti-oxidation/corrosion performances and good mechanical strength as well as adjustable dielectric loss capabilities. However, it is still a great challenge to broaden their effective absorption bandwidth (reflection loss value <= -10 dB) and strengthen the absorption intensity simultaneously, which is mostly attributed to the unreliable impedance matching degree at the absorber/air interface. Herein, a feasible strategy is adopted to synthesize TiCN@N-doped C nanocubes, whose low graphitization degree provides desirable impedance matching conditions. In the meantime, masses of core/shell hetero interfaces ensure strong microwave absorption capability. Experimental results reveal that the optimal effective absorption bandwidth of the prepared TiCN@N-doped C nanocubes can reach up to 5.44 GHz with a thickness of 1.88 mm. Our work demonstrates that the TiCN@N-doped C nanocubes have potential for electromagnetic absorbing applications.
机译:小说组成的复合材料的发展陶瓷和C材料日益减少严重的电磁辐射是很大的微波吸收(MA)的意义字段,考虑他们的上级抗氧化/腐蚀性能和良好的机械强度以及可调介电损耗的能力。还是一个巨大的挑战,扩大他们的有效吸收带宽(反射损失值< = -10分贝),加强吸收强度同时,大部分都是由于不可靠的阻抗匹配学位在吸收器/空气界面。可行的策略是采用合成TiCN@N-doped C nanocubes的低石墨化程度提供了理想的阻抗匹配条件。保证大量的核/壳异性接口微波吸收能力强。实验结果表明,最优有效吸收带宽的准备TiCN@N-doped C nanocubes可达5.44 GHz厚度为1.88毫米。证明了TiCN@N-doped C nanocubes对电磁吸收有潜力吗应用程序。

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