Electrospinning is a simple method for producing ultrafine fibers, and has attracted much recent interest. The classical approach was either polymer solutions or polymer melts. Bubbfil spinning (e.g. bubble-electrospinning) is a facile method to fabricate nanofibers with high surface area to volume ratio and high porosity. Polyether sulfone (PES) dissolved in N,N-Dimethylacetamide (DMAC) was used in this study to compare fiber morphologies of two technologies at the same spinning conditions. Effects of solution concentration, applied voltage and tip-to-collector distance on the morphology of the fibers were experimentally studied. It revealed that the Bubbfil spinning process is a better candidate for mass-production of nanofiber with contr...
The diversity of nanofibre properties is caused not only by their chemical composition but also by t...
Using an electrospinning technique, polymer materials have been spun using electrostatic potential t...
Electrospinning has been recognized as an efficient technique for the forming of polymer nanofibers....
Nanofibers of highly sulfonated (IEC ∼4.5 meq/g) polystyrene (SPS) were successfully electrospun. To...
Academic and industrial research on nanofibres is an area of increasing global interest, as seen in ...
There are many of parameters that affect the morphology and diameter of electrospun fiber, such as c...
There are many of parameters that affect the morphology and diameter of electrospun fiber, such as c...
Academic and industrial research on nanofibres is an area of increasing global interest, as seen in ...
Abstract-- Electrospinning is a unique way to producing novel polymer nano fibres with diameter typi...
Electrospun nano-fibers exhibit two significant properties: a high surface-to-volume ratio and a rel...
Bubbfil spinning is to use polymers' or melts' bubbles or membranes for fabrication of nanomaterials...
Nonwoven mats of poly(lactic acid) (PLA), poly(ethylene oxide) (PEO), and poly(ε-caprolactone) (PCL)...
The electrospinning technique was used to spin ultra-thin fibers from several polymer/solvent system...
Heat-resisting nanofibers have many potential applications in various industries, and the bubbfil sp...
Ultra fine fibers were electrospun from regenerated silk fibroin/formic acid solution. Effect of som...
The diversity of nanofibre properties is caused not only by their chemical composition but also by t...
Using an electrospinning technique, polymer materials have been spun using electrostatic potential t...
Electrospinning has been recognized as an efficient technique for the forming of polymer nanofibers....
Nanofibers of highly sulfonated (IEC ∼4.5 meq/g) polystyrene (SPS) were successfully electrospun. To...
Academic and industrial research on nanofibres is an area of increasing global interest, as seen in ...
There are many of parameters that affect the morphology and diameter of electrospun fiber, such as c...
There are many of parameters that affect the morphology and diameter of electrospun fiber, such as c...
Academic and industrial research on nanofibres is an area of increasing global interest, as seen in ...
Abstract-- Electrospinning is a unique way to producing novel polymer nano fibres with diameter typi...
Electrospun nano-fibers exhibit two significant properties: a high surface-to-volume ratio and a rel...
Bubbfil spinning is to use polymers' or melts' bubbles or membranes for fabrication of nanomaterials...
Nonwoven mats of poly(lactic acid) (PLA), poly(ethylene oxide) (PEO), and poly(ε-caprolactone) (PCL)...
The electrospinning technique was used to spin ultra-thin fibers from several polymer/solvent system...
Heat-resisting nanofibers have many potential applications in various industries, and the bubbfil sp...
Ultra fine fibers were electrospun from regenerated silk fibroin/formic acid solution. Effect of som...
The diversity of nanofibre properties is caused not only by their chemical composition but also by t...
Using an electrospinning technique, polymer materials have been spun using electrostatic potential t...
Electrospinning has been recognized as an efficient technique for the forming of polymer nanofibers....