2014
DOI: 10.1016/j.carbon.2013.11.027
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Fabrication and electromagnetic interference shielding effectiveness of carbon nanotube reinforced carbon fiber/pyrolytic carbon composites

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Cited by 192 publications
(101 citation statements)
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“…A C C E P T E D ACCEPTED MANUSCRIPT 2 EMI-SE properties of materials [4][5][6]. There are mainly two kinds of methods to improve the EMI SE properties [7][8][9][10].…”
Section: A N U S C R I P Tmentioning
confidence: 99%
“…A C C E P T E D ACCEPTED MANUSCRIPT 2 EMI-SE properties of materials [4][5][6]. There are mainly two kinds of methods to improve the EMI SE properties [7][8][9][10].…”
Section: A N U S C R I P Tmentioning
confidence: 99%
“…Recently, carbon/carbon composites (CCCs) have stimulated intense scientific research on account of their exceptional physical and chemical properties such as excellent high-temperature resistance, mechanical properties, durability, and electrical conductivity [126][127][128][129][130][131][132][133][134][135][136][137][138]. Examples of CCCs include carbon nanofibers/activated carbon fibers (CNFs/ACFs), carbon nanotubes/carbon fibers (CNTs/CFs), carbon nanotubes/carbon black (CNTs/CB), carbon nanotubes/carbon papers (CNTs/CPs), and graphene/CNTs [134][135][136][137][138].…”
Section: Nanocarbon Coating On Carbon Fibersmentioning
confidence: 99%
“…Examples of CCCs include carbon nanofibers/activated carbon fibers (CNFs/ACFs), carbon nanotubes/carbon fibers (CNTs/CFs), carbon nanotubes/carbon black (CNTs/CB), carbon nanotubes/carbon papers (CNTs/CPs), and graphene/CNTs [134][135][136][137][138]. These CCCs have been used in a wide range of applications, i.e., in polymer composites, in electromagnetic interference shielding materials, in electrode materials, and in thermal conductivity materials.…”
Section: Nanocarbon Coating On Carbon Fibersmentioning
confidence: 99%
“…[32][33][34][35][36][37][38][39][40] The focus of this work is electronic transport in nanocomposites. In that regard, an accurate understanding of how CNTs modify electrical properties of an otherwise insulating matrix, can extend their utilization to applications such as electromagnetic interference shielding [41][42][43][44][45][46][47][48], electrostatic reduction [13], and strain sensing for structural health monitoring [27,[49][50][51][52][53][54][55][56][57][58][59][60][61], to mention some examples.…”
Section: Introductionmentioning
confidence: 99%