"Functionalization of Polypropylene with High Dielectric Properties: Applications in Electric Energy Storage"
written by T. C. Mike Chung,
published by Green and Sustainable Chemistry, Vol.2 No.2, 2012
has been cited by the following article(s):
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[13] Electrical Characteristics of Polypropylene Mixed with Natural Nanoclay
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[15] 1The Hashemite University, Zarqa, Jordan, 2Universiti Putra Malaysia, Serdang, Malaysia
[16] Variation of Current-Density as a Function of Electric-Field Intensity in Synthetic Nanoclay-filled Polypropylene
[17] Significantly improved energy density of BaTiO 3 nanocomposites by accurate interfacial tailoring using a novel rigid-fluoro-polymer
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[18] Late transition metal catalyzed α-olefin polymerization and copolymerization with polar monomers
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[19] Bio-Inspired Fluoro-polydopamine Meets Barium Titanate Nanowires: A Perfect Combination to Enhance Energy Storage Capability of Polymer Nanocomposites
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[20] Bio-inspired polydopamine coating as a facile approach to constructing polymer nanocomposites for energy storage
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[21] Mussel-inspired fluoro-polydopamine functionalization of titanium dioxide nanowires for polymer nanocomposites with significantly enhanced energy storage capability
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[22] Influence of Polyethylene Glycol Unit on Palladium‐and Nickel‐Catalyzed Ethylene Polymerization and Copolymerization
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[23] Using Time–Temperature Superposition for Determining Dielectric Loss in Functionalized Polyethylenes
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[24] Enhanced energy density in P (VDF-HFP) nanocomposites with gradient dielectric fillers and interfacial polarization
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[25] Dielectric study of biodegradable and/or bio-based polymeric materials
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[27] Breakdown of synthetic-clay-filled nanocomposite polypropylene
[28] Reduction of capacitor aging by the use of transient-free diode-based synchronous switch
[29] Mechano Optical Behavior of Novel Polymers for Capacitor Application During Their Processing Cycles
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[30] Efficient introduction of aromatic vinyl group by incorporation of divinylbiphenyl, p‐divinylbenzene in syndiospecific styrene polymerization using aryloxo‐modified …
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[31] Current-density vs electric-field intensity characteristics of polypropylene filled with natural clay as nanomaterial
[32] Dielectric characterization of bi-axially oriented polypropylene insulations
[33] Studies on synthesis, structural, surface morphological and electrical properties of Pr6O11–MgO nanocomposite
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[34] Polypropylene as a Promising Plastic: A Review
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[35] Bio-inspired Modification of TiO2 Nanowires for Fabrication of High-κ Polymer Nanocomposites
[36] Critical role of morphology on the dielectric constant of semicrystalline polyolefins
[37] Metamaterial behavior of polymer nanocomposites based on polypropylene/multi-walled carbon nanotubes fabricated by means of ultrasound-assisted extrusion
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[38] High-field antiferroelectric-like behavior in uniaxially stretched poly (vinylidene fluoride-trifluoroethylene-chlorotrifluoroethylene)-grafted-poly (methyl methacrylate) films with high energy density
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[39] Improved breakdown strength and electrical energy storage performance of γ-poly (vinylidene fluoride)/unmodified montmorillonite clay nano-dielectrics
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[40] Investigations Into 25-and 30-μm-Thick Glass Capacitors at 23° C and 235° C and Area Dependence of Dielectric Strength of Alkali-Free Schott Inc. AF 32 ECO Glass
[41] Synthesis of ultrahigh molecular weight polymers by homopolymerisation of higher α-olefins catalysed by aryloxo-modified half-titanocenes
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[42] Redox-sensitive mesoporous silica nanoparticles functionalized with PEG through a disulfide bond linker for potential anticancer drug delivery
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[43] Copolymerizations of Norbornene and Tetracyclododecene with α-Olefins by Half-Titanocene Catalysts: Efficient Synthesis of Highly Transparent, Thermal Resistance Polymers
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[44] Oligothiophene-containing polymer brushes by ROMP and RAFT: Synthesis, characterization and dielectric properties
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[45] Synthesis of Functional Polypropylene Containing Hindered Phenol Stabilizers and Applications in Metallized Polymer Film Capacitors
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[46] Polypropylene/Polyaniline Nanofiber/Reduced Graphene Oxide Nanocomposite with Enhanced Electrical, Dielectric, and Ferroelectric Properties for a High Energy Density Capacitor
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[47] Rational Design of Organotin Polyesters
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[48] Electrical breakdown of polypropylene filled with natural clay as nanomaterial
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[49] Effect of incorporating aromatic and chiral groups on the dielectric properties of poly (dimethyltin esters)
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[50] Computational strategies for polymer dielectrics design
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[51] Diels–Alder polysulfones as dielectric materials: Computational guidance & synthesis
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[52] Efficient Terpolymerization of Ethylene and Styrene with 1, 7‐Octadiene by Aryloxo Modified Half‐Titanocenes–Cocatalyst Systems: Efficient Introduction of the Reactive Functionality
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[54] A Greener Approach for Synthesis of Functionalized Polyolefins by Introducing Reactive Functionality into Ethylene Copolymers
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[55] Topological‐Structure Modulated Polymer Nanocomposites Exhibiting Highly Enhanced Dielectric Strength and Energy Density
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[56] Simultaneously improving the thermal stability, flame retardancy and mechanical properties of polyethylene by the combination of graphene with carbon black
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[57] Synthesis of Next Generation Dielectric Materials through Rational Exploration of Chemical Space
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[59] Polymers Containing Highly Polarizable Conjugated Side Chains as High‐Performance All‐Organic Nanodielectric Materials
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[61] Introduction of reactive functionality by the incorporation of divinylbiphenyl in ethylene copolymerization with styrene or 1‐hexene using aryloxo‐modified half …
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