Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Structural Evolution of Polyacrylonitrile Fibers in Stabilization and Carbonization"
written by Sungho Lee, Jihoon Kim, Bon-Cheol Ku, Junkyung Kim, Han-Ik Joh,
published by Advances in Chemical Engineering and Science, Vol.2 No.2, 2012
has been cited by the following article(s):
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[2] Lignin addition to polyacrylonitrile copolymer solution and its effect on the properties of carbon fiber precursor
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[3] Preparation of amidoxime modified porous organic polymer flowers for selective uranium recovery from seawater
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[4] Study on Structure Evolution and Reaction Mechanism in Microwave Pre-oxidation
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[5] Achieving a bifunctional conformal coating on nickel-rich cathode LiNi0. 8Co0. 1Mn0. 1O2 with half-cyclized polyacrylonitrile
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[6] The Performance of Fibrous CDC Electrodes in Aqueous and Non-Aqueous Electrolytes
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[7] Improved Procedure for Electro-Spinning and Carbonisation of Neat Solvent-Fractionated Softwood Kraft Lignin
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[8] On the structural evolution of textile grade polyacrylonitrile fibers during stabilization and carbonization: Towards the manufacture of low‐cost carbon fiber
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[9] Towards designing strong porous carbon fibers through gel spinning of polymer blends
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[10] Smart composite nanofiber mats with thermal management functionality
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[11] A Two-Step Microwave Annealing Process for PAN Pre-Oxidation through a TM-Mode Cavity
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[12] Preparation of Porous Carbon Nanofiber Electrodes Derived from 6FDA-Durene/PVDF Blends and Their Electrochemical Properties
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[13] Production and characterization of liquid crystal/polyacrylonitrile nano-fibers by electrospinning method
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[14] Graphene oxide incorporated waste wool/PAN hybrid fibres
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[15] Chitosan/polyacrylonitrile composite nanofiltration membranes: towards separation of salts, riboflavin and antibacterial study
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[16] Phase and Structural Transformation of Polyacrylonitrile Fiber during Two-Stage Thermal Stabilization
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[17] The fractionation, carbonisation and characterisation of electro-spun lignin fibres
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[18] Bioinspired Assembly of Double Honeycomb‐Like Hierarchical Capsule Confined Encapsulation with Functional Micro/Nanocrystals
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[19] Highly efficient halogen-free flame retardants of thermally-oxidized polyacrylonitrile copolymers containing bio-derived caffeic acid derivatives
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[20] Carbon Nanofibers Production via the Electrospinning Process
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[21] Evolution of structural inhomogeneity in polyacrylonitrile fibers by oxidative stabilization
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[22] Thermal stabilization of poly (acrylonitrile-co-itaconic acid) nanofibers as carbon nanofiber precursor
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[23] Dry-Jet Wet Spinning of Thermally Stable Lignin-Textile Grade Polyacrylonitrile Fibers Regenerated from Chloride-Based Ionic Liquids Compounds
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[24] Nonflammable pre-carbonized polyacrylonitrile nanofiber webs
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[25] Preparation and Structures of Carbon-Copper Oxide Nanofibers from Electrospun Polyacrylonitrile Composite
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[26] Fabrication and characterization of amidoxime-grafted silica composite particles via emulsion graft polymerization
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[27] Comparative study of interphase evolution in polysiloxane resin-derived matrix containing carbon micro and nanofibers during thermal treatment
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[28] Thermal analysis of acrylic and carbon fibers
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[29] Effects of oxidation treatment by KClO 3/H 2 SO 4 systems on the chemical, crystal and microscopic structures of polyacrylonitrile fibers
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[30] High-Temperature Performance of Recycled Low-Density Polyethylene-Modified Asphalt Binder Reinforced with Thermally Treated Polyacrylonitrile Fiber
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[31] Conductive cyclized polyacrylonitrile coated LiNi0. 6Co0. 2Mn0. 2O2 cathode with the enhanced electrochemical performance for Li-Ion batteries
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[32] Iron and silicon oxide doped/PAN-based carbon nanofibers as free-standing anode material for Li-ion batteries
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[33] Fabrication of Silica/polymer composite materials by graft polymerization for environmental applications
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[34] Effect of KMnO4 on chemical, crystal and microscopic structure of polyacrylonitrile fibers
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[37] Oxidative Pyrolysis of Si/Polyacrylonitrile Composites as an Unconventional Approach to Fabricate High Performance Lithium Ion Battery Negative Electrodes
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[38] Beyond Percolation Threshold Loading of Polyacrylonitrile Electrospun Nanofibers with Boron Nitride Nanotubes for Use in High Temperature Composites
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[39] Addition of carbon nanotubes to electrospun polyacrylonitrile as a way to obtain carbon nanofibers with desired properties
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[40] Electrospun polyacrylonitrile–lauric acid composite nanofiber webs as a thermal energy storage material
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[41] Hydrogen peroxide modified polyacrylonitrile-based fibers and oxidative stabilization under microwave and conventional heating–The 1st comparative study
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[42] Carbonization of polyacrylonitrile-based fibers under defined tensile load: Influence on shrinkage behavior, microstructure, and mechanical properties
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[43] Facile Synthesis of Single‐ and Multi‐Layer Graphene/Mn3O4 Integrated 3D Urchin‐Shaped Hybrid Composite Electrodes by Core‐Shell Electrospinning
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[45] Time Dependent Structure and Property Evolution in Fibres during Continuous Carbon Fibre Manufacturing
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[46] Multi-component framework derived SiC composite paper to support efficient thermal transport and high EMI shielding performance
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[47] Investigation on structure and characteristics of alpaca‐based wet‐spun polyacrylonitrile composite fibers by utilizing natural textile waste
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[48] The adsorption effect of freestanding SiO x-decorated stabilized polyacrylonitrile interlayers in lithium–sulfur batteries
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[49] Carbon nanofibers-based nanocomposites with silicon oxy-carbide matrix
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[50] Polyacrylonitrile/liquid crystalline graphene oxide composite fibers–Towards high performance carbon fiber precursors
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[51] Solubility behavior of poly (diaminonaphthalene) doped poly (vinyl alcohol) films in different solvents and structural and electrical characterization of corresponding …
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[52] Evaluation of composite PAN fibers incorporated with carbon nanotubes and titania and their performance during the microwave-induced pre-oxidation
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[53] Polymeric and metal oxide structured nanofibrous composites fabricated by electrospinning as highly efficient hydrogen evolution catalyst
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[54] Fabrication of polyacrylonitrile/β-cyclodextrin/graphene oxide nanofibers composite as an efficient adsorbent for cationic dye
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[55] In-situ 放射光 WAXD/SAXS 同時測定によるポリアクリロニトリル繊維の熱処理下における構造形成過程に関する研究
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[56] Effects of ultraviolet irradiation on stabilization of textile-grade polyacrylonitrile fibers without photo-initiator for preparing carbon fibers
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[57] Safer and more effective route for polyethylene-derived carbon fiber fabrication using electron beam irradiation
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[58] Accelerating the stabilization of polyacrylonitrile fibers by UV irradiation
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[59] A green approach to prepare hierarchical porous carbon nanofibers from coal for high-performance supercapacitors
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[60] Photocatalytic zinc oxide on flexible polyacrylonitrile nanofibers via sol–gel coaxial electrospinning
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[61] A Review of Flame Retarding Polyacrylonitrile (PAN) Fibers and Composites
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[62] Preparation of Polyacrylonitrile/Iron Oxide Nanofiber Adsorbent Modified with 2-Amino-3-Methyl-1-Hexanethiol for the Adsorption of Th4+ Ion
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[63] Characterization of Commercial Carbon fiber from Standard PAN Precursors and Low-Cost Carbon Fiber from Textile PAN based Precursors
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[64] Understanding the Structure-property-performance Relationship of Silicon Negative Electrodes
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[65] EFFECT OF CARBONISATION ON PANOX PREFORMS
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[66] Development of surface structure of stabilized polyacrylonitrile fibers during slow carbonization to carbon fibers
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[67] The Effect of Heat Treatment Condition on the Mechanical Properties of oxi-PAN Based Carbon Fiber
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[68] Preparation and characterization of polyacrylonitrile nanofiber adsorbent modified with 6-amino-1-hexanethiol hydrochloride for the adsorption of thorium (IV) …
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[69] Nanomaterials for Thermoelectric Devices
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[75] Thermal Analysis on the Stabilization Behavior of Ternary Copolymers Based on Acrylonitrile, Methyl Acrylate and Itaconic Acid
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[76] The Effects of Different Carbonization Temperatures on the Properties of Electrospun Carbon Nanofibre from Polyacrylonitrile (PAN) Precursor
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[77] Electrospun Magnetic Zeolite/Polyacrylonitrile Nanofibers for Extraction of PAHs from Waste Water: Optimized with Central Composite Design
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[80] Structure of sp2-carbon fiber prepared by high-temperature thermomechanical treatment of polyacrylonitrile fiber: a Raman and X-ray diffraction study
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[81] Carbon Composites and Related Metal Matrix
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[82] Green production of bio-ethanol from cellulosic fiber waste and its separation using polyacrylonitrile-co-poly methyl acrylate membrane
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[84] Nano-Fiber Filters for Automotive Applications
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[85] Melt Processable Polyacrylonitrile Copolymer Precursors for Carbon Fibers: Rheological, Thermal, and Mechanical Properties
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[86] Single and hybrid electromagnetic absorbing coatings on polyacrylonitrile precursor to motivate the microwave pre-oxidation
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[88] Rapid stabilization of polyacrylonitrile fibers achieved by plasma-assisted thermal treatment on electron-beam irradiated fibers
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[89] Synthesis of electrospun polyacrylonitrile-derived carbon fibers and comparison of properties with bulk form
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[94] Conversion of Polyacrylonitrile to Nitrogen-Doped Graphene
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[97] Preparation of conductive carbon films from polyacrylonitrile/graphene oxide composite films by thermal treatment
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[98] Study on the oxidative stabilization of polyacrylonitrile fibers by microwave heating
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[99] Electrohydrodynamic Casting Bismuth Telluride Microparticle-Loaded Carbon Nanofiber Composite Material With Multiple Sensing Functions
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[100] Research on the multi-scale microstructure of polyacrylonitrile precursors prepared by a dry-jet wet spinning process
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[101] The Role of Tension and Temperature for Efficient Carbonization of Polyacrylonitrile Fibers: Toward Low Cost Carbon Fibers
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[102] Positron lifetime study of PAN‐based carbon fiber‐reinforced polymer composites
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[103] Effect of nanocrystalline cellulose addition on needleless alternating current electrospinning and properties of nanofibrous polyacrylonitrile meshes
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[104] Binder-free, freestanding cathodes fabricated with an ultra-rapid diffusion of sulfur into carbon nanofiber mat for lithium sulfur batteries
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[107] Investigation of the chemical changes during thermal treatment of polyacrylonitrile and 15N-labelled polyacrylonitrile by means of in-situ FTIR and 15N NMR …
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[112] Effect of alkaline hydrolysis on cyclization reaction of PAN nanofibers
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[113] Oxidation of polyacrylonitrile nanofiber webs as a precursor for carbon nanofiber: aligned and non-aligned nanofibers
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[114] Effect of gamma radiation on the transport and structural properties of polyacrylonitrile-lithium bis (oxalato) borate films
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[115] Preparation of Thin Porous Carbon Membranes from Polyacrylonitrile by Phase Separation and Heat Treatment
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[116] Detailed examination of nitrile stretching vibrations relevant for understanding the behavior of thermally treated polyacrylonitrile
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[123] DFT study on the ionic cyclization mechanism of copolymers of acrylonitrile-itaconic acid: Direct or autocatalytic?
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[124] Evolution of self-generating porous microstructures in polyacrylonitrile-cellulose acetate blend fibres
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[125] Preparation of porous carbon films from polyacrylonitrile by proton irradiation and carbonization
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[126] CHEMICAL AND THERMAL INVESTIGATIONS OF ELECTROSPUN POLYACRYLONITRILE NANOFIBERS INCORPORATED WITH VARIOUS NANOSCALE …
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[127] A statistical approach to evaluate the oxidative process of electrospun polyacrylonitrile ultrathin fibers
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[128] Oxidative stabilization of polyacrylonitrile nanofibers and carbon nanofibers containing graphene oxide (GO): a spectroscopic and electrochemical study
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[129] Superhydrophobic PAN nanofibers for gas diffusion layers of proton exchange membrane fuel cells for cathodic water management
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[130] Electrochemical properties of sulfurized-polyacrylonitrile cathode for lithium–sulfur batteries: effect of polyacrylic acid binder and fluoroethylene carbonate additive
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[131] Solubility of kraft lignin-g-polyacrylonitrile copolymer in various ionic liquids and characterization of its solution
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[132] Surface Characterization and Optical Study on Electrospun Nanofibers of PVDF/PAN Blends
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[134] Laser Heat Treatment Processing for Pan Based Carbon Fiber Structure Modification
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[135] METAL OXIDES INCORPORATED POLYACRYLONITR1LE-BASED ACTIVATED CARBON NANOFIBERS ON METHANE ADSORPTION
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[136] Radial heterogeneity evolution in polyacrylonitrile-based carbon fiber precursor during thermal stabilization
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[137] Improving the Electrochemical Performance of LiNi0. 5Mn1. 5O4 Cathode Materials by Surface Coating with Cyclized Polyacrylonitrile for Lithium-Ion Batteries
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[138] Three-dimensional and ultralight sponges with tunable conductivity assembled from electrospun nanofibers for a highly sensitive tactile pressure sensor
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[139] Hydrophilic PAN based carbon nanofibres with improved graphitic structure and enhanced mechanical performance using ethylenediamine functionalized …
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[140] Influence of graphene oxide on the properties of composite polyacrylonitrile membranes
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[141] The effect of the type of admixture on the properties of polyacrylonitrile membranes modified with nanotubes, graphene oxide and graphene
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[142] Zastosowanie membran z poliakrylonitrylu domieszkowanego tlenkiem grafenu do oczyszczania ścieków przemysłowych powstających podczas obróbki metali
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[144] Engineering Freestanding, Binder-free Electrospun Nanofiber Cathodes and Use of In-Situ Infrared Spectroelectrochemistry for Lithium-Sulfur Batteries
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[145] Chemical and thermal investigations of electrospun polyacrylonitrile nanofibers incorporated with various nanoscale inclusions
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[146] Processing, manufacturing, and characterisation of lignin-derived precursor and carbon fibres
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[147] Influence of processing parameters on the properties of carbon fibres–an overview: Einfluss der Fertigungsparameter auf die Eigenschaften der Kohlenstofffasern–ein …
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[149] PAN 계 탄소섬유의 제조 및 탄화 조건에 따른 특성 분석
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[150] Electrospun carbon nanofiber based catalyst support for proton exchange membrane fuel cell
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[151] Physical and Mechanical Properties of The Lignin-based Carbon Nanofiber-reinforced Epoxy Composite
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[152] Preparation and characterization of PAN-based carbon fiber with carbonization temperature
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[153] PAN 與其共聚物氧化纖維性質探討
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[154] Laser Carbonization of PAN-Nanofiber Mats with Enhanced Surface Area and Porosity
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[155] Investigation of Progress of Reactions and Evolution of Radial Heterogeneity in the Initial Stage of Thermal Stabilization of PAN Precursor Fibres
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[156] Interphase structure of carbon fiber reinforced polyamide 6 revealed by microbeam X-ray diffraction with synchrotron radiation
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[157] Structural transformation of polyacrylonitrile fibers during stabilization and low temperature carbonization
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[158] Nanostructured nitrogen-doped mesoporous carbon derived from polyacrylonitrile for advanced lithium sulfur batteries
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[159] Spectroscopic studies of the influence of CNTs on the thermal conversion of PAN fibrous membranes to carbon nanofibers
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[160] Synthetic Fibres for Composite Applications
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[161] Characteristics of wet‐spun and thermally treated poly acrylonitrile fibers
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[163] Using ionic liquids to reduce energy consumption for carbon fibre production
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[164] Influence of processing parameters on the properties of carbon fibres–an overview
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[165] Effect of Polymer and Ceramic Morphology on the Material and Electrochemical Properties of Electrospun PAN/Polymer Derived Ceramic Composite Nanofiber …
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[167] Modelling and optimization of electrospun materials for technical applications
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[168] THERMAL AND ELECTRICAL PROPERTIES OF CARBONIZED PAN NANOFIBERS FOR IMPROVED SURFACE CONDUCTIVITY OF CARBON FIBER …
2015
[169] Polyacrylonitrile nanofibers with added zeolitic imidazolate frameworks (ZIF-7) to enhance mechanical and thermal stability
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[170] Thermal and rheological characteristics of bio-based carbon fibre precursor derived from low molecular weight organosolv lignin
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[171] Effects of functional group of carbon nanotubes on mechanical properties of carbon fibers
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[172] Preparation and characterization of a novel electrospun ammonium molybdophosphate/polyacrylonitrile nanofiber adsorbent for cesium removal
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[173] Improvement of the cycling performance of LiCoO 2 with assistance of cross-linked PAN for lithium ion batteries
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[174] Synthesis of new carbon fiber precursors using AGET ATRP in microemulsion
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[175] Functional group changes of polyacrylonitrile fibres during their oxidative, carbonization and electrochemical treatment
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[176] Tunable dielectric properties in polyacrylonitrile/multiwall carbon nanotube composites
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[177] Design and fabrication of hollow and filled graphene-based polymeric spheres via core–shell electrospraying
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[178] EXAMINATION OF THE CHEMICAL MECHANISMS DURING THERMAL TREATMENT OF CARBON FIBER PAN PRECURSORS
20th International Conference on Composite Materials, 2015
[179] Investigating superhydrophobic behaviors of pan nano-fibers on the properties of gas diffusion layers of a proton exchange membrane fuel cell
2015
[180] The composition of photocatalytic nanofibres through electrospinning
2014
[181] Preparation of flexible zinc oxide/carbon nanofiber webs for mid-temperature desulfurization
Applied Surface Science, 2014
[182] Preparation and Characterization of Interconnected, Kraft Lignin‐Based Carbon Fibrous Materials by Electrospinning
Macromolecular Materials and Engineering, 2014
[183] Colloidal Nanocrystals of Lithiated Group 14 Elements
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[184] Mechanical and electrical properties of aligned carbon nanotube/carbon matrix composites
Carbon, 2014
[185] Heating Effect on Physical and Electrochemical Properties of Nanofibrous Polyacrylonitrile Separator for Lithium Batteries
Journal of Nanoscience and Nanotechnology, 2014
[186] Indicators for evaluation of progress in thermal stabilization reactions of polyacrylonitrile fibers
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[187] Preparation of porous carbon nanofibers derived from graphene oxide/polyacrylonitrile composites as electrochemical electrode materials
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[188] In Situ Thermally Cross‐linked Polyacrylonitrile as Binder for High‐Performance Silicon as Lithium Ion Battery Anode
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[189] Effects of drawing process on the structure and tensile properties of textile-grade PAN fiber and its carbon fiber
e-Polymers, 2014
[190] Peculiarities of thermochemical transformations of polyacrylonitrile synthesized by anionic polymerization
Thermochimica Acta, 2014
[191] Highly photocatalytic performance of flexible 3 dimensional (3D) ZnO nanocomposite
Applied Catalysis B: Environmental, 2014
[192] A procedure for precise determination of thermal stabilization reactions in carbon fiber precursors
Polymer Degradation and Stability, 2013
[193] Preparation and characterization of lignin nanofibre-based materials obtained by electrostatic spinning
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[194] Scission of electrospun polymer fibres by ultrasonication
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[195] Conformal Coatings of Cyclized‐PAN for Mechanically Resilient Si nano‐Composite Anodes
Advanced Energy Materials, 2013
[196] CHARACTERIZATION AND GAS ADSORPTION PROCESS OF POLYACRYLONITRILE-BASED CARBON FIBERS
Thesis, 2013
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