Ultrafine fibers were spun from polyacrylonitrile (PAN)/N,N-dimethyl formamide (DMF) solution as a precursor of carbon nanofibers using a homemade electrospinning set-up. Fibers with diameter ranging from 200 nm to 1200 nm were obtained. Morphology of fibers and distribution of fiber diameter were investigated varying concentration and applied voltage by scanning electric microscopy (SEM). Average fiber diameter and distribution were determined from 100 measurements of the random fibers with an image analyzer (SemAfore 5.0, JEOL). A more systematic understanding of process parameters was obtained and a quantitative relationship between electrospinning parameters and average fiber diameter was established by response surface methodology (RSM...
Electrospinning is a method that can be use to prepare polymeric or composite fibres having diameter...
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Polyacrylonitrile (PAN) fibers are widely used as precursors in the manufacture of high-conducting a...
Abstract: We performed an extensive characterization of an electrospinning process to evaluate how t...
Electrospinning is the most widely utilized method to create nanofibers because of the direct setup,...
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Electrospinning is a process of production fibers with diameters ranging from the submicron down to ...
Ultra fine fibers were electrospun from regenerated silk fibroin/formic acid solution. Effect of som...
The electrospinning process of fiber production is examined in regards to the preparation of continu...
The electrospinning process of fiber production is examined in regards to the preparation of continu...
ABSTRACT Nanofibers are materials that present high elasticity, strength, porosity and surface-area-...
Electrospinning technology is a common method for preparing ultrafine fibers and nanofibers. Using n...
Abstract-- Electrospinning is a unique way to producing novel polymer nano fibres with diameter typi...
Objective(s): Since the electric field is the main driving force in electrospinning systems, the mod...
Electrospinning is a method that can be use to prepare polymeric or composite fibres having diameter...
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Polyacrylonitrile (PAN) fibers are widely used as precursors in the manufacture of high-conducting a...
Abstract: We performed an extensive characterization of an electrospinning process to evaluate how t...
Electrospinning is the most widely utilized method to create nanofibers because of the direct setup,...
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Electrospinning is a process of production fibers with diameters ranging from the submicron down to ...
Ultra fine fibers were electrospun from regenerated silk fibroin/formic acid solution. Effect of som...
The electrospinning process of fiber production is examined in regards to the preparation of continu...
The electrospinning process of fiber production is examined in regards to the preparation of continu...
ABSTRACT Nanofibers are materials that present high elasticity, strength, porosity and surface-area-...
Electrospinning technology is a common method for preparing ultrafine fibers and nanofibers. Using n...
Abstract-- Electrospinning is a unique way to producing novel polymer nano fibres with diameter typi...
Objective(s): Since the electric field is the main driving force in electrospinning systems, the mod...
Electrospinning is a method that can be use to prepare polymeric or composite fibres having diameter...
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....
Electrospinning process is highly dictated by electric field strength. Thus, two key parameters i.e....