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      Nanoscale pulverization effect in double-layered MOF-derived hierarchical G/Co@C composites for boosting electromagnetic wave dissipation

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          Abstract

          The MOFs derived Co/C nanoparticles decorated RGO composite prepared by thermal stress variations caused pulverization effect realized a microwave-absorption performance enhancement.

          Abstract

          Metal–organic frameworks (MOFs) have drawn a lot of interest as prospective starting points for highly effective electromagnetic wave (EMW) absorbers. However, the inevitable shrinkage and probable densification that occur during pyrolysis significantly reduce the microwave-loss capacity. A dual-layer MOF, ZIF-8@ZIF-67, is created and effectively decorated on graphene sheets as a solution to this problem. The shrinkage and densification were then suppressed by the subsequent pulverization effect between the two MOFs. Due to suitable compositions and specialized microstructures, G/Co@C exhibits excellent impedance matching and dissipates EMW by combining magnetic and dielectric loss. The maximum reflection loss of G/Co@C-7/paraffin is −55.0 dB at 5.8 GHz with just 7% filler. Therefore, the preparation of high-efficiency MOF-derived microwave absorbers by the pulverization effect is demonstrated to be an efficient strategy.

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          Most cited references43

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          Tunable High-Performance Microwave Absorption of Co 1- x S Hollow Spheres Constructed by Nanosheets within Ultralow Filler Loading

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            Hollow Ni/C microspheres derived from Ni-metal organic framework for electromagnetic wave absorption

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              Electromagnetic microwave absorption theory and recent achievements in microwave absorbers

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                Author and article information

                Contributors
                Journal
                NANOHL
                Nanoscale
                Nanoscale
                Royal Society of Chemistry (RSC)
                2040-3364
                2040-3372
                December 22 2022
                2023
                : 15
                : 1
                : 294-303
                Affiliations
                [1 ]School of Physics and Electronics, Central South University, Changsha, Hunan 410083, China
                [2 ]Hunan Key Laboratory of Advanced Fibers and Composites, Central South University, Changsha, Hunan 410083, China
                [3 ]State Key Laboratory of Powder Metallurgy, Central South University, Changsha, Hunan 410083, China
                [4 ]Research Institute of Aerospace Technology, Central South University, Changsha, Hunan 410083, China
                [5 ]Cerema, Equipe Recherche ENDSUM, 23 avenue Amiral Chauvin, 49136, Les Ponts de Cé, France
                Article
                10.1039/D2NR04851E
                dd6bc204-ab2e-405a-94d7-1c88a30f037c
                © 2023

                http://rsc.li/journals-terms-of-use

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