Electrospinning has been considered a promising and novel procedure to fabricate polymer nanofibers due to its simplicity, cost effectiveness, and high production rate, making this technique highly relevant for both industry and academia. It is used to fabricate non-woven fibers with unique characteristics such as high permeability, stability, porosity, surface area to volume ratio, ease of functionalization, and excellent mechanical performance. Nanofibers can be synthesized and tailored to suit a wide range of applications including energy, biotechnology, healthcare, and environmental engineering. A comprehensive outlook on the recent developments, and the influence of electrospinning on biomedical uses such as wound dressing, drug releas...
Electrospinning has been recognized as an efficient technique for the fabrication of polymer nanofib...
Electrospinning forms fibers from either an electrically charged polymer solution or polymer melt. O...
Electrospinning is a very simple and versatile process by which polymer nanofibers with di-ameters r...
Electrospinning has been considered a promising and novel procedure to fabricate polymer nanofibers ...
Electrospinning is a technology that has been widely used as a novel method for the generation of na...
Electrospinning is one of the most studied techniques for the facile, versatile, and scalable synthe...
The interest in the electrospinning process for the medicinal chemistry and nanotechnology field has...
Nanofibers offer potential applications in the biomedical field and they have become popular as they...
Electrospinning is a versatile technique that enables the development of nanofiber-based scaffolds, ...
Electrospinning is the simplest and most widely used technology for producing ultra-thin fibers. Dur...
AbstractThe electrospinning technique provides non-wovens to the order of few nanometers with large ...
Electrospun polymer nanofibers (EPNF) constitute one of the most important nanomaterials with divers...
Electrospinning has been recognized as a simple and versatile method for fabrication of polymer nano...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Electrospun fibers have received significant interests for various application areas such as filtrat...
Electrospinning has been recognized as an efficient technique for the fabrication of polymer nanofib...
Electrospinning forms fibers from either an electrically charged polymer solution or polymer melt. O...
Electrospinning is a very simple and versatile process by which polymer nanofibers with di-ameters r...
Electrospinning has been considered a promising and novel procedure to fabricate polymer nanofibers ...
Electrospinning is a technology that has been widely used as a novel method for the generation of na...
Electrospinning is one of the most studied techniques for the facile, versatile, and scalable synthe...
The interest in the electrospinning process for the medicinal chemistry and nanotechnology field has...
Nanofibers offer potential applications in the biomedical field and they have become popular as they...
Electrospinning is a versatile technique that enables the development of nanofiber-based scaffolds, ...
Electrospinning is the simplest and most widely used technology for producing ultra-thin fibers. Dur...
AbstractThe electrospinning technique provides non-wovens to the order of few nanometers with large ...
Electrospun polymer nanofibers (EPNF) constitute one of the most important nanomaterials with divers...
Electrospinning has been recognized as a simple and versatile method for fabrication of polymer nano...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Electrospun fibers have received significant interests for various application areas such as filtrat...
Electrospinning has been recognized as an efficient technique for the fabrication of polymer nanofib...
Electrospinning forms fibers from either an electrically charged polymer solution or polymer melt. O...
Electrospinning is a very simple and versatile process by which polymer nanofibers with di-ameters r...