Polyvinyl alcohol nanofibers were prepared by a needleless electrospinning technique using a rotating spiral wire coil as spinneret. The influences of coil dimension (e.g., coil length, coil diameter, spiral distance, and wire diameter) and operating parameters (e.g., applied voltage and spinning distance) on electrospinning process, nanofiber diameter, and fiber productivity were examined. It was found that the coil dimension had a considerable influence on the nanofiber production rate, but minor effect on the fiber diameter. The fiber production rate increased with the increased coil length or coil diameter, or the reduced spiral distance or wire diameter. Higher applied voltage or shorter collecting distance also improved the fiber prod...
Electrospinning is an important, widely used process to generate nanofibers. However, there is still...
The conventional electrospinning often uses a needle-like nozzle to produce nanofibers with a very l...
In this study, silk nanofibres were prepared by electrospinning from silk fibroin in a mixture of fo...
Polyvinyl alcohol nanofibers were prepared by a needleless electrospinning technique using a rotatin...
Elcctrospinning is a very useful technique to produce polymeric nanofibers for diverse applications....
In this study, we have demonstrated that a rotating metal wire coil can be used as a nozzle to elect...
In this study, we demonstrated the needleless electrospinning of poly(vinyl alcohol) (PVA) nanofiber...
Polyacrylonitrile (PAN) nanofibers were prepared by a needleless electrospinning method using three ...
Mass production of nanofibers is crucial in both laboratory research and industry application of nan...
In this study, we have demonstrated that a rotating metal wire coil can be used as a nozzle to elect...
The fibre generator shape and dimension are key factors affecting the needleless electrospinning pro...
In this study, different wire coils have been used as electrodes for needless electrospinning. Very ...
In this article, we have demonstrated a novel needleless electrospinning of PVA nanofibers by using ...
Coil-based electrospinning is among the most efficient needleless electrospinning technologies. Conv...
Electrospinning is a simple, but efficient and versatile, technology to produce polymeric nanofibers...
Electrospinning is an important, widely used process to generate nanofibers. However, there is still...
The conventional electrospinning often uses a needle-like nozzle to produce nanofibers with a very l...
In this study, silk nanofibres were prepared by electrospinning from silk fibroin in a mixture of fo...
Polyvinyl alcohol nanofibers were prepared by a needleless electrospinning technique using a rotatin...
Elcctrospinning is a very useful technique to produce polymeric nanofibers for diverse applications....
In this study, we have demonstrated that a rotating metal wire coil can be used as a nozzle to elect...
In this study, we demonstrated the needleless electrospinning of poly(vinyl alcohol) (PVA) nanofiber...
Polyacrylonitrile (PAN) nanofibers were prepared by a needleless electrospinning method using three ...
Mass production of nanofibers is crucial in both laboratory research and industry application of nan...
In this study, we have demonstrated that a rotating metal wire coil can be used as a nozzle to elect...
The fibre generator shape and dimension are key factors affecting the needleless electrospinning pro...
In this study, different wire coils have been used as electrodes for needless electrospinning. Very ...
In this article, we have demonstrated a novel needleless electrospinning of PVA nanofibers by using ...
Coil-based electrospinning is among the most efficient needleless electrospinning technologies. Conv...
Electrospinning is a simple, but efficient and versatile, technology to produce polymeric nanofibers...
Electrospinning is an important, widely used process to generate nanofibers. However, there is still...
The conventional electrospinning often uses a needle-like nozzle to produce nanofibers with a very l...
In this study, silk nanofibres were prepared by electrospinning from silk fibroin in a mixture of fo...