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      Structural design and preparation of Ti 3C 2T x MXene/polymer composites for absorption-dominated electromagnetic interference shielding

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      a , b , a , a , a , a , a , a ,
      Nanoscale Advances
      RSC

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          Abstract

          Electromagnetic interference (EMI) is a pervasive and harmful phenomenon in modern society that affects the functionality and reliability of electronic devices and poses a threat to human health. To address this issue, EMI-shielding materials with high absorption performance have attracted considerable attention. Among various candidates, two-dimensional MXenes are promising materials for EMI shielding due to their high conductivity and tunable surface chemistry. Moreover, by incorporating magnetic and conductive fillers into MXene/polymer composites, the EMI shielding performance can be further improved through structural design and impedance matching. Herein, we provide a comprehensive review of the recent progress in MXene/polymer composites for absorption-dominated EMI shielding applications. We summarize the fabrication methods and EMI shielding mechanisms of different composite structures, such as homogeneous, multilayer, segregated, porous, and hybrid structures. We also analyze the advantages and disadvantages of these structures in terms of EMI shielding effectiveness and the absorption ratio. Furthermore, we discuss the roles of magnetic and conductive fillers in modulating the electrical properties and EMI shielding performance of the composites. We also introduce the methods for evaluating the EMI shielding performance of the materials and emphasize the electromagnetic parameters and challenges. Finally, we provide insights and suggestions for the future development of MXene/polymer composites for EMI shielding applications.

          Abstract

          Summary of advances in structural design and fabrication of homogeneous, multilayer, porous, hybrid, and magnetic Ti 3C 2T x /polymer composites, regulating the electromagnetic parameters for green absorption electromagnetic interference shielding.

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          Most cited references3

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          Introduction to Electromagnetic Compatibility

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            Electromagnetic Waves

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              Shielding of Electromagnetic Waves

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                Author and article information

                Journal
                Nanoscale Adv
                Nanoscale Adv
                NA
                NAADAI
                Nanoscale Advances
                RSC
                2516-0230
                20 June 2023
                11 July 2023
                20 June 2023
                : 5
                : 14
                : 3549-3574
                Affiliations
                [a ] Key Lab of Rubber-Plastics, Ministry of Education, Shandong Provincial Key Lab of Rubber-Plastics, School of Polymer Science and Engineering, Qingdao University of Science and Technology Qingdao 266042 China yhyan@ 123456qust.edu.cn
                [b ] School of Materials and Environmental Engineering, Chizhou University Chizhou 247000 China zhangqm@ 123456czu.edu.cn
                Author information
                https://orcid.org/0000-0003-3486-3130
                https://orcid.org/0000-0003-2115-4378
                https://orcid.org/0000-0002-8632-1264
                https://orcid.org/0000-0002-3235-4247
                Article
                d3na00130j
                10.1039/d3na00130j
                10334419
                37441247
                55d1f777-d326-4065-b5b9-6e2b7b5dcb6c
                This journal is © The Royal Society of Chemistry
                History
                : 1 March 2023
                : 23 May 2023
                Page count
                Pages: 26
                Funding
                Funded by: Natural Science Foundation of Shandong Province, doi 10.13039/501100007129;
                Award ID: ZR2020ME074
                Funded by: China Postdoctoral Science Foundation, doi 10.13039/501100002858;
                Award ID: 2020M672014
                Funded by: National Natural Science Foundation of China, doi 10.13039/501100001809;
                Award ID: 51703111
                Categories
                Chemistry
                Custom metadata
                Paginated Article

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