2017
DOI: 10.1039/c7tc02074k
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Ultrahigh electromagnetic interference shielding performance of lightweight, flexible, and highly conductive copper-clad carbon fiber nonwoven fabrics

Abstract: Lightweight, flexible, and highly conductive Cu-clad carbon fiber nonwoven fabrics were developed as superior EMI shielding materialsviafacile and controllable wet-laid and electroless technologies.

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Cited by 107 publications
(55 citation statements)
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“…Moreover, interconnected MXene and graphene are responsible for electron mobility. The cross-sections of MGNC and MGNOC confirm that the formation of the foam, which is a highly attractive structural requirement for lightweight EMI shielding ( Figure 1 j,k) [ 34 , 35 ]. The cross-sections of MGNC and MGNOC visually confirm the foam structure ( Figure 1 j–l).…”
Section: Resultsmentioning
confidence: 79%
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“…Moreover, interconnected MXene and graphene are responsible for electron mobility. The cross-sections of MGNC and MGNOC confirm that the formation of the foam, which is a highly attractive structural requirement for lightweight EMI shielding ( Figure 1 j,k) [ 34 , 35 ]. The cross-sections of MGNC and MGNOC visually confirm the foam structure ( Figure 1 j–l).…”
Section: Resultsmentioning
confidence: 79%
“…Furthermore, in the polymer foams the voids form due to the different nucleation time of constitutional solid and other external factor like temperature pressure [ 29 ]. Advanced EMI shielding materials should be lightweight, flexible, cost effective, dielectric, and multifunctional, and should possess a tunable absorption, high thermal resistance, intrinsic conductivity, large aspect ratio, high corrosion resistance, and good magnetic and electronic properties [ 19 , 20 , 30 , 31 , 32 , 33 , 34 ].…”
Section: Introductionmentioning
confidence: 99%
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