"Novel Ultrasonic Dispersion of Carbon Nanotubes"
written by G.T. Caneba, C. Dutta, V. Agrawal, M. Rao,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.9 No.3, 2010
has been cited by the following article(s):
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[11] The Influence of Nano Silica Surface Area on Its Reacitivity in Cement Composites
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[13] Effect of ultrasonic treatment on the X-band microwave absorption of multiwalled carbon nanocomposite
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[14] Effect of Nanoparticles on Mechanical Properties of Cement-Sand Mortar Applications
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[15] EFFECT OF ULTRASONIC-ASSISTED COMPACTION ON DENSITY AND HARDNESS OF Cu-CNT NANOCOMPOSITES SINTERED BY CAPSULE-FREE HOT …
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[16] Magnetoresponsive conductive colloidal suspensions with magnetized carbon nanotubes
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[17] Carbon nanotubes: a novel material for multifaceted applications in human healthcare
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[18] Dispersion and functionalization of single-walled carbon nanotubes (SWCNTS) for nanocomposite applications
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[19] The dispersion, solubilization and stabilization in “solution” of single-walled carbon nanotubes
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[20] Influence of Ultrasonic Treatment on Electromagnetic Characteristics of Composites Based on Multiwall Carbon Nanotubes at Microwave Frequencies.
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[21] The Effect of TaC Reinforcement on the Oxidation Resistance of CNTs/SiC CMCs
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[22] Carbon nanotubes in nanomedicine
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[23] Influence of Ultrasonic Treatment on Electromagnetic Characteristics of Composites Based on Multiwall Carbon Nanotubes at Microwave Frequencies
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[24] Improving the mechanical properties of nano-hydroxyapatite
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[25] Mathematical Modeling of Microfluidic Nanofluidic and Fluid Flows using Tribology
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[26] Влияние ультразвуковой обработки на диэлектрическую проницаемость композитов на основе многостенных углеродных нанотрубок
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[28] AA Sinar1'a, MA NurAzni1'b, Z. Firuz1', MA Hazizan2'd
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[30] Efeito do tamanho de nanotubos de carbono de paredes múltiplas em sensores eletroquímicos para moléculas de interesse farmacêutico
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[31] Techniques and Protocols for Dispersing Nanoparticle Powders in Aqueous Media—is there a Rationale for Harmonization?
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[32] Dynamic Fracture Toughness of TaC/CNTs/SiC CMCs Prepared by Spark Plasma Sintering
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[33] Sound absorption characteristics of nanocomposite polyurethane foams infused with carbon nanotubes
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[34] Treatment Method for Dispersion of Carbon Nanotubes: A Review
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[35] Spark plasma sintering of TaC and/or CNTs reinforced SiC CMCs
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[36] Characterization and Combustion of Aluminum Nanopowders in Energetic Systems
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[37] Experimental & Numerical Investigations for Carbon Nanotubes Reinforced in Cement-based Matrix Composite Beams using FEM
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[38] Spreading behaviors of graphene suspension droplets on a solid surface
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[39] Foaming Characteristics of Vinyl Acetate-Acrylic Acid (VA-AA) Copolymer-based Surfactants
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[40] Mechanical Dispersion Methods for Carbon Nanotubes in Aerospace Composite Matrix Systems
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[41] Dispersion of a bundle of carbon nanotubes by mechanical torsional energy
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[42] Critical parameters in exfoliating graphite into graphene
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[43] Dispersion of carbon nanotubes in water and non-aqueous solvents
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[44] Nanotechnology in concrete: Critical review and statistical analysis
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[45] Surfactant-oil interactions: foaming & toxicity
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[46] Experimental investigation on the study of mechanical and microstructural properties of hybrid composite cement beams reinforced with multi-walled carbon …
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[47] Experimental investigation on the study of mechanical and microstructural properties of hybrid composite cement beams reinforced with multi-walled carbon nanotubes and carbon fibres
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[50] Dispersion of carbon nanotubes within polyurethane foams and its effects on acoustic absorption
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[51] CHARACTERIZATION OF POLYURETHANE FOAM INFUSED WITH DISPERSED CARBON NANOTUBES FOR ENHANCED DISSIPATION OF ACOUSTIC AND VIBRATION ENERGIES
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[52] Experimental investigations to study the effect of carbon nanotubes reinforced in cement-based matrix composite beams
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[53] Modificación superficial de (MWCNT) con H
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[54] Quality and Yield Improvement Analysis of CNT Oil Sensor
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[56] Experimental investigation of the effect of carbon nanotubes and carbon fibres on the behaviour of plain cement composite beams
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[57] Experimental investigation on effect of carbon nanotubes and carbon fibres on the behavior of plain cement mortar composite round bars under direct tension
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[58] Effect of barrier discharge on homogeneous dispersion of carbon nanotubes in octylalcohols
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[59] Wytwarzanie nanokompozytów PVC/CNT z zastosowaniem czynników dysperguj?cych
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[63] Nanotechnology in Concrete: State of the Art and Practice
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