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MOF-Guest complex derived Cu/C nanocomposites with multiple heterogeneous interfaces for excellent electromagnetic waves absorption

机译:MOF-GUATER COMPORT衍生的CU / C纳米复合材料,具有多种异构接口,可实现优异的电磁波吸收

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摘要

Electrical conductivity and interfacial polarization are two crucial factors to design high-performance electromagnetic absorption (EMA) materials, but how to synergistically balance these factors still remains to be difficult. In this work, we report the synthesis of Cu/C nanocomposites via the controlled pyrolysis of a MOF-guest complex. The prepared Cu/C nanocomposites are made up of cross-linked carbon network and various irregular particles. The carbon network provides appropriate electrical conductivity to contribute to the conductance loss. Multiple heterogeneous interfaces, such as Mo2C/C, Mo2C/CuO, CuO/C, Mo2C/Cu, and Cu/C interfaces, have been determined in these Cu/C nanocomposites, resulting in obviously improved polarization loss. As a result, the Cu/C nanocomposite exhibits excellent EMA performance, where the efficient absorption bandwidth reaches 6.8 GHz, and the maximal absorption gets to 52 dB. This research provides new idea to design high-performance EMA nanocomposites by tuning the electrical conductivity and interfacial polarization.
机译:导电性和界面极化是设计高性能电磁吸收(EMA)材料的两个关键因素,但如何协同平衡这些因素仍然是困难的。在这项工作中,我们通过Mof-Guest综合体的受控热解报告Cu / C纳米复合材料的合成。制备的Cu / C纳米复合材料由交联的碳网络和各种不规则颗粒组成。碳网络提供适当的导电率,以有助于导电损耗。在这些Cu / C纳米复合材料中确定了多种异质界面,例如MO2C / C,MO 2 C / CUO,CUO / C,MO2C / Cu和Cu / C接口。导致显然提高了极化损耗。结果,Cu / C纳米复合材料表现出优异的EMA性能,其中有效的吸收带宽达到6.8GHz,最大吸收达到52 dB。本研究提供了通过调整导电性和界面极化来设计高性能EMA纳米复合材料的新想法。

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