Open Journal of Composite Materials

Open Journal of Composite Materials

ISSN Print: 2164-5612
ISSN Online: 2164-5655
www.scirp.org/journal/ojcm
E-mail: ojcm@scirp.org
"Microwave Absorption Properties of Carbon Nanotubes-Epoxy Composites in a Frequency Range of 2 - 20 GHz"
written by Zhou Wang, Guang-Lin Zhao,
published by Open Journal of Composite Materials, Vol.3 No.2, 2013
has been cited by the following article(s):
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[2] Electrical and shielding properties of epoxy composites with Ni–C and Co–C core-shell nanoparticles
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[3] High density interfaces enhanced microwave absorption in multifunctional carbon nanotubes‐glass fiber‐epoxy composites
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[4] The Mechanical, Dielectric, and EMI Shielding Properties of Nickel Ferrite (NiF)/Graphene (Gr)-Doped Epoxy Composites
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[5] Microwave absorption in epoxy composites filled with MoS2 and carbon nanotubes
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[6] Microwave Properties of GNP-Polymer Composites with a Segregated Conductive Network
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[7] Structure, morphology and modelling studies of polyvinylalcohol nanocomposites reinforced with nickel oxide nanoparticles and graphene quantum dots
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[8] Research progress on carbon-based materials for electromagnetic wave absorption and the related mechanisms
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[9] W-band optical modulators using electro-optic polymer waveguides and patch antenna arrays
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[10] 碳基电磁波吸收材料及其机理研究进展
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[11] In vitro biocompatibility study of microwave absorbing conducting polymer blend films for biomedical applications
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[12] Electromagnetic and microwave absorption properties of MWCNTs based polymer nanocomposites
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[13] Enhancing Microwave Absorbing Properties of Nickel-Zinc-Ferrite with Multi-walled Carbon Nanotubes (MWCNT) Loading at Higher Gigahertz Frequency
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[14] Anti-radar application of multiwalled carbon nanotubes and zinc oxide synthesized using a hydrothermal method
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[15] CNT Conductive Epoxy Composite Metamaterials: Design, Fabrication, and Characterization
2020
[16] Fabrication and characterization of iron coated carbon nanotubes/polymer composite for microwave absorption
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[17] Microwave properties of epoxy composites with mixed filler carbon nanotubes/BaTiO3
Applied …, 2020
[18] Polyethylene composites with segregated carbon nanotubes network: Low frequency plasmons and high electromagnetic interference shielding efficiency
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[19] Characterization of microwave absorption in carbon nanotubes using resonance aperture transmission method
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[20] Improving the Mechanical Properties of Cf/PEEK Composite by Implanting Functionalized Multi-Wall Carbon Nanopaper
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[21] Nanocomposite Material Characterization of a Solid-State Fractional Capacitor
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[22] Microwave absorption efficiency of poly (vinyl-butyral)/Ultra-thin nickel coated fly ash cenosphere composite
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[23] Effect of magnetic fillers and their orientation on the electrodynamic properties of BaFe 12-x Ga x O 19 (x= 0.1–1.2)—epoxy composites with carbon nanotubes within …
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[24] Investigation into Return Loss Characteristic of Graphene Oxide/Zinc Ferrite/epoxy composite at X-band frequency
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[25] Microwave properties of epoxy composites with mixed filler carbon nanotubes/BaTiO 3
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[26] Modified electrical and microwave absorption properties of silver nanowires grown on graphene nanoplatelets
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[27] Dielectric and microwave shielding properties of three-phase composites graphite nanoplatelets/carbonyl iron/epoxy resin
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[28] Microwave absorption performance enhancement using glass fiber-reinforced polymer nanocomposites containing dielectric fillers in X-band
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[29] Three‐dimensional architecture of absorbers for enhancement of the absorbing properties of MWNTs
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[30] Enhanced microwave absorption properties of Fe3C/C nanofibers prepared by electrospinning
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[31] Fabrication of renewable resource based hyperbranched epoxy nanocomposites with MWCNT-polyaniline nanofiber-carbon dot nanohybrid as tough anticorrosive …
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[32] Shear assisted two phase solvent extraction for high dispersion, filler wetting and fracture resistance in quasi-isotropic epoxy nano-composites
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[33] Electromagnetic shielding properties of epoxy composites with hybrid filler nanocarbon/BaTiO3
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[34] Recent Patents in Additive Manufacturing of Continuous Fiber Reinforced Composites
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[35] Decorating untreated carbon nanotubes with Fe3O4@ SiO2 nanoparticles and its microwave absorption property
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[36] ФЕДЕРАЛЬНОЕ ГОСУДАРСТВЕННОЕ БЮДЖЕТНОЕ УЧРЕЖДЕНИЕ НАУКИ ИНСТИТУТ АРХЕОЛОГИИ РОССИЙСКОЙ АКАДЕМИИ НАУК
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[37] PDMS-Ni coated flyash cenosphere composite for broadband microwave absorption
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[38] Effect of carbon nanotubes length on thermal and mechanical properties of carbon resin and carbon fibre reinforced polymer
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[39] Nanocarbon/polyethylene composites with segregated conductive network for electromagnetic interference shielding
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[40] Electromagnetic and Mechanical Properties of the Nanocomposites of Polyacrylonitrile/Carbon Nanotubes
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[41] Magnetodielectric Microwave Radiation Absorbent Materials and Their Polymer Composites
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[42] Distribution of milled carbon fibers as a function of their length on S-glass fabric and its effect on the electromagnetic properties of S-glass epoxy composites
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[43] Effect of processing conditions on the electrical resistance of MWCNT/epoxy nanocomposite based strain sensors
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[44] Preparation of carbon nanotube and polyurethane‐imide hybrid composites by sol–gel reaction
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[45] Using The Kramers-Kronig Transforms To Retrieve The Conductivity From The Effective Complex Permittivity.
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[46] An experimental study on the effect of adding multi-walled carbon nanotubes on high-velocity impact behavior of fiber metal laminates
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[47] Multi-Component MWCNT/NG/EP-based Bipolar Plates with Enhanced Mechanical and Electrical Characteristics Fabricated by Compression Moulding
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[48] Electromagnetic and microwave absorption characteristics of PMMA composites filled with a nanoporous resorcinol formaldehyde based carbon aerogel
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[49] Using The Kramers-Kronig Transforms To Retrieve The Conductivity From The Effective Complex Permittivity
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[50] Dissimilar Materials Joining of Carbon Fiber Polymer to Dual Phase 980 by Friction Bit Joining, Adhesive Bonding, and Weldbonding
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[51] СИНТЕЗ И ИССЛЕДОВАНИЕ СВОЙСТВ НАНОКОМПОЗИТНЫХ ПЛЕНОК ПОЛИАКРИЛОНИТРИЛ/УГЛЕРОДНЫЕ НАНОТРУБКИ
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[52] A novel fabrication of a high performance SiO2-graphene oxide (GO) nanohybrids: characterization of thermal properties of epoxy nanocomposites filled with SiO2-GO …
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[53] Microwave radar absorbing properties of multiwalled carbon nanotubes polymer composites: a review
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[54] Reinforcement effect of acid modified nanodiamond in epoxy matrix for enhanced mechanical and electromagnetic properties
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[55] Electrical conductivity, aging behavior, and electromagnetic interference (EMI) shielding properties of polyaniline/MWCNT nanocomposites
Journal of Thermoplastic Composite Materials, 2017
[56] Design of carbon nanofiber embedded conducting epoxy resin
Materials Chemistry and Physics, 2017
[57] A novel fabrication of a high performance SiO 2-Graphene oxide (GO) nanohybrids: Characterization of Thermal Properties of epoxy nanocomposites filled with SiO 2- …
Journal of Colloid and Interface Science, 2017
[58] Remarkable microwave absorption performance of graphene at a very low loading ratio
Composites Part B: Engineering, 2017
[59] Design of multiple-layer microwave absorbing structure based on rice husk and carbon nanotubes
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[60] ISO-MANM: An imitation based optimization tool for multilayer microwave absorbers
Journal of Molecular Graphics and Modelling, 2017
[61] Enhanced microwave absorption of quartic layered epoxy-mwcnt composite for radar applications
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[62] Электромагнитные и механические свойства нанокомпозитов полиакрилонитрил/углеродные нанотрубки
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[63] Федеральное государственное бюджетное учреждение науки Институт Латинской Америки Российской академии наук
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[65] Electromagnetic and mechanical properties of La(NO3)3-doped multi-walled carbon nanotube/epoxy resin composites
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[66] Improved Microwave Absorption of E-Glass-Epoxy Composites By Conducting Polymer Coated Carbon Nanotubes
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[67] Effect of ultrasonic treatment on electrophysical properties of carbon nanotubes-laquer composites at microwave frequencies
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[68] Influence of Ultrasonic Treatment on Electromagnetic Characteristics of Composites Based on Multiwall Carbon Nanotubes at Microwave Frequencies
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[69] Preparation and characterization of polymer composites containing boron compounds
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[70] Effect of ultrasonic treatment on electrophysical properties of carbon nanotubes–laquer composites at microwave frequencies In
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[71] Improved Microwave Absorption of E-Glass Epoxy Composites by Conducting Polymer Coated Carbon Nano-tubes
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[72] Through silicon vias: materials, models, design, and performance
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[73] Effect of in-situ oxidative preparation on electrical properties of Epoxy/PANi/MWCNTs nanocomposites
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[74] Interconnect Modeling, CNT and GNR Structures, Properties, and Characteristics
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[75] 镧元素掺杂碳纳米管/环氧树脂复合材料的电磁, 热学及力学性能
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[76] Microwave composite absorbers based on barium hexaferrite/carbon nanotubes for 0.01-18 GHz applications
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[77] Scheming of microwave shielding effectiveness for X band considering functionalized MWNTs/epoxy composites
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[78] Investigation on electromagnetic characteristics, microwave absorption, thermal and mechanical properties of ferromagnetic cobalt–polystyrene composites in the X-band (8.4–12.4 GHz)
RSC Advances, 2016
[79] Modeling of gradient composite structures for shielding of microwaves
Molecular Crystals and Liquid Crystals, 2016
[80] Influence of Ultrasonic Treatment on Electromagnetic Characteristics of Composites Based on Multiwall Carbon Nanotubes at Microwave Frequencies.
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[81] Investigation on electromagnetic characteristics, microwave absorption, thermal and mechanical properties of ferromagnetic cobalt–polystyrene composites in …
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[82] Microwave absorption properties of multi-walled carbon nanotube (outer diameter 20–30 nm)–epoxy composites from 1 to 26.5 GHz
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[83] Epoksi/MWCNT ve epoksi/BN kompozit malzemeler
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[84] Simulation of multi layered Radar Absorbing Structure of epoxy based MWNTs for better microwave absorption
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[85] Влияние ультразвуковой обработки на диэлектрическую проницаемость композитов на основе многостенных углеродных нанотрубок
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[87] Composites Based on Rice Husk Ash/Polyester for Use as Microwave Absorber
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[88] Carbon Nanotube Based VLSI Interconnects Analysis and Design
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[89] Microwave Properties of Nanocomposites: Effect of Manufacturing Methods and Nanofiller Structure
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[91] Effect of ultrasonic treatment on permittivity of composites based on multiwall carbon nanotubes
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[92] A review of different solvents, mass transfer, and hydrodynamics for postcombustion CO2 capture
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[95] Microwave Absorption Properties of Multi-Walled Carbon Nanotubes (outer diameter 20-30 nm)-Epoxy Composites from 1 to 26.5 GHz
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