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Journal of Applied Polymer Science, ISSN 0021-8995, 02/2019, Volume 136, Issue 8, pp. 47087 - n/a
In this article, a novel process called cylindrical‐electrode‐assisted solution blowing spinning (CSBS) for producing excellent quality nanofibers with... 
synthesis | fibers | nanoparticles | morphology | nanowires | nanocrystals | manufacturing | processing techniques | POLYMER SCIENCE | DEPOSITION | PARAMETERS | YARN | MATS | OPTIMIZATION | Electrodes | Scanning electron microscopy | Morphology | Mats | Blowing | Ethylene oxide | Nanofibers
Journal Article
Polymer International, ISSN 0959-8103, 2009, Volume 58, Issue 4, pp. 331 - 342
Electrospinning is a well-established and intensively investigated methodology, and is currently the only known technique that can fabricate continuous... 
Electrospinning | Throughput | Nanofibre assemblies | Scale-up | POLYMER SCIENCE | ARRAY | electrospinning | scale-up | MULTIPLE JETS | nanofibre assemblies | throughput
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 08/2016, Volume 8, Issue 31, pp. 20274 - 20282
Journal Article
Journal of Polymer Science, Part B: Polymer Physics, ISSN 0887-6266, 12/2014, Volume 52, Issue 23, pp. 1547 - 1559
Centrifugal spinning, a recently developed approach for ultra-fine fiber production, has attracted much attention as compared with the electrospinning, due to... 
Thin films | Finger phenomenon | Nozzle-less | Necking | Jet path | Centrifugal spinning | Nanotechnology | POLYMER SCIENCE | FORCESPINNING(TM) | LIQUID | finger phenomenon | FLOW | necking | thin films | FINGERING INSTABILITY | ROTATING DISK | FIBERS | FILMS | centrifugal spinning | POLYMER NANOFIBERS | jet path | nanotechnology | nozzle-less | Fingers | Electrospinning | Centrifugal force | Formations | Angular velocity | Nanofibers | Spinning | Rotational
Journal Article
Journal of Power Sources, ISSN 0378-7753, 01/2015, Volume 273, pp. 1114 - 1119
Centrifugal spinning is a fast, cost-effective and safe alternative to the electrospinning technique, which is commonly used for making fiber-based separator... 
Electrospinning | Polyacrylonitrile | Battery separator | Centrifugal spinning | Silica | ELECTROCHEMISTRY | NANOFIBER COMPOSITES | WEB | ENERGY & FUELS | POLYMER ELECTROLYTE | ANODES
Journal Article
Polymer Reviews, ISSN 1558-3724, 10/2014, Volume 54, Issue 4, pp. 677 - 701
Nanofibers are an important class of material that is useful in a variety of applications, including filtration, tissue engineering, protective clothing,... 
processing-structure relationships | electrospinning | centrifugal spinning | nanofibers | CORE-SHEATH | HYDROGELS | POLYMER SCIENCE | MOLECULAR-WEIGHT | MEMBRANE | SOLVENT | FIBER FORMATION | POLYMER NANOFIBERS | SURFACE | POLYURETHANE | SCALE
Journal Article
Journal of Applied Polymer Science, ISSN 0021-8995, 07/2019, Volume 136, Issue 26, pp. 47706 - n/a
Properties or characteristics of fibers are affected by their topology. In fact, these topologies are found to have significant impacts in the functionalities... 
polyurethane | fibers | morphology | electrospinning | ELASTOMER | POLYMER SCIENCE | ELECTROSPUN | RELEASE | MECHANICAL-PROPERTIES | NANOFIBROUS SCAFFOLDS | FLAME-RETARDANT | ORIENTATION | COMPOSITE FIBERS | PET FIBER | Polyurethanes | Methods | Polyurethane resins | Topology | Mathematical morphology | Fibers | Mechanics | Mechanics of materials | Physics
Journal Article
Acta Biomaterialia, ISSN 1742-7061, 09/2018, Volume 78, pp. 111 - 122
Journal Article
Materials Science Forum, ISSN 0255-5476, 2017, Volume 898, pp. 2187 - 2196
The rheological behaviors of polyacrylonitrile (PAN) in NaSCN aqueous solutions containing different amount of Graphene oxide (GO) were investigated through... 
GO/PAN spinning solutions | Graphene oxide | Polyacrylonitrile (PAN) | NaSCN aqueous solution | Electrostatic interaction | Rheological properties | Viscosity | Polyacrylonitrile | Storage modulus | Aqueous solutions | Graphene | Rheology | Loss modulus | Activation energy | Energy storage
Conference Proceeding
Journal of Colloid And Interface Science, ISSN 0021-9797, 07/2014, Volume 425, pp. 136 - 142
Journal Article
Journal Article
Journal of King Saud University - Science, ISSN 1018-3647, 2019
The basic mechanism of electrostatic spinning is rapid whipping of charged jet. An ideal model was established for the key part of electrostatic spinning... 
Charged jet | Electrostatic spinning | Rapid whipping | Viscoelastic behavior model | Mechanical analysis
Journal Article