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受仙人掌启发的双金属金属有机框架衍生的一维-二维分级钴/氮修饰碳结构用于增强电磁波吸收性能

Cactus-Inspired Bimetallic Metal-Organic Framework-Derived 1D-2D Hierarchical Co/N-Decorated Carbon Architecture toward Enhanced Electromagnetic Wave Absorbing Performance.

作者信息

Xu Xueqing, Ran Feitian, Fan Zhimin, Lai Hua, Cheng Zhongjun, Lv Tong, Shao Lu, Liu Yuyan

机构信息

MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering , Harbin Institute of Technology , Harbin , Heilongjiang 150001 , P. R. China.

Natural Science Research Center, Academy of Fundamental and Interdisciplinary National Key Laboratory of Science and Technology on Advanced Composites in Special Environments , Harbin Institute of Technology , Harbin , Heilongjiang 150090 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2019 Apr 10;11(14):13564-13573. doi: 10.1021/acsami.9b00356. Epub 2019 Apr 2.

Abstract

Metal-organic framework (MOF)-derived magnetic metal/carbon nanocomposites have shown tremendous potential for lightweight electromagnetic wave (EMW) absorption. However, it is a challenge but highly significant to design and construct mixed-dimensional hierarchical architectures with synergistically integrated characteristics from individual MOFs for advancing the EMW absorption performance. Inspired by the structure of cactus, a novel hierarchical one-dimensional (1D)-two-dimensional (2D) mixed-dimensional Co/N-decorated carbon architecture comprising carbon nanotubes grafted on carbon flakes (abbreviated as CoNC/CNTs) has been fabricated by the pyrolysis of bimetallic CoZn-ZIF-L. The CoNC/CNTs integrate the advantages of 1D nanotubes for the extra polarization of EMW and 2D nanoflakes with an interconnected porous structure for multiple reflection losses of EMW and optimization of impedance matching. The resultant CoNC/CNTs demonstrate excellent EMW absorbing performance. For the optimal EMW absorbing material of CoNC/CNT-3/1, minimum reflection loss reaches -44.6 dB at 5.20 GHz with a low filler loading of 15 wt %. Moreover, the largest effective bandwidth range achieves 4.5 GHz with a thickness of 1.5 mm and a filled ratio of 20 wt %. These findings indicate that such a mixed 1D-2D hierarchical architecture synergistically enhances EMW absorbing performance. This work sheds light on the rational design of a mixed-dimensional carbon architecture derived from MOFs for desirable functionalities.

摘要

金属有机框架(MOF)衍生的磁性金属/碳纳米复合材料在轻质电磁波(EMW)吸收方面展现出巨大潜力。然而,从单个MOF设计和构建具有协同整合特性的混合维度分级结构以提升EMW吸收性能是一项具有挑战性但意义重大的工作。受仙人掌结构的启发,通过双金属CoZn-ZIF-L的热解制备了一种新型的分级一维(1D)-二维(2D)混合维度Co/N修饰碳结构,该结构由接枝在碳片上的碳纳米管组成(简称为CoNC/CNTs)。CoNC/CNTs整合了1D纳米管对EMW额外极化的优势以及具有相互连接多孔结构的2D纳米片对EMW多次反射损耗和阻抗匹配优化的优势。所得的CoNC/CNTs表现出优异的EMW吸收性能。对于CoNC/CNT-3/1的最佳EMW吸收材料,在5.20 GHz频率下,最低反射损耗达到-44.6 dB,填料负载低至15 wt%。此外,在厚度为1.5 mm且填充率为20 wt%时,最大有效带宽范围达到4.5 GHz。这些发现表明这种1D-2D混合分级结构协同增强了EMW吸收性能。这项工作为从MOF衍生出具有理想功能的混合维度碳结构的合理设计提供了思路。

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