Electrospinning is a versatile technique for the fabrication of polymer-based nano/microfibers. Both physical and chemical characteristics of pre-electrospinning polymer solutions affect the morphology and chemistry of electrospun nanofibers. An atmospheric-pressure plasma jet has previously been shown to induce physical modifications in polylactic acid (PLA) solutions. This work aims at investigating the plasma-induced chemistry in organic solutions of PLA, and their effects on the resultant PLA nanofibers. Therefore, very broad range of gas, liquid, and solid (nanofiber) analyzing techniques has been applied. Plasma alters the acidity of the solutions. SEM studies illustrated that complete fiber morphology enhancement only occurred when b...
Morphology, crystallinity, thermal, and mechanical properties of nanofibrous mats are known to highl...
none7noThis work is focused on the use of non-thermal plasma to improve the electrospinnability of ...
This study focuses on the enhanced electrospinning of 300-Polyethylene oxide-polyethylene oxide tere...
Electrospinning is a versatile technique for the fabrication of polymer-based nano/microfibers. Both...
Electrospinning is a versatile technique for the fabrication of polymer-based nano/microfibers. Both...
Physical properties of pre-electrospinning polymer solutions play a key role in electrospinning as t...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
An atmospheric pressure plasma jet (APPJ) specifically designed for liquid treatment has been used i...
This study focuses on the enhanced electrospinning of 300-Polyethylene oxide-polyethylene oxide tere...
In this work, various overlaps between plasma technology and electrospinning process and products ar...
Morphology, crystallinity, thermal, and mechanical properties of nanofibrous mats are known to highl...
Summary form only given. Poly-L-lactic acid (PLLA) is a biocompatible and biodegradable polymer, whi...
Summary form only given. Poly-L-lactic acid (PLLA) is a biocompatible and biodegradable polymer, whi...
Morphology, crystallinity, thermal, and mechanical properties of nanofibrous mats are known to highl...
none7noThis work is focused on the use of non-thermal plasma to improve the electrospinnability of ...
This study focuses on the enhanced electrospinning of 300-Polyethylene oxide-polyethylene oxide tere...
Electrospinning is a versatile technique for the fabrication of polymer-based nano/microfibers. Both...
Electrospinning is a versatile technique for the fabrication of polymer-based nano/microfibers. Both...
Physical properties of pre-electrospinning polymer solutions play a key role in electrospinning as t...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
none9noPolymeric nanofibrous mats are currently used for biomedical applications as tissue engineeri...
An atmospheric pressure plasma jet (APPJ) specifically designed for liquid treatment has been used i...
This study focuses on the enhanced electrospinning of 300-Polyethylene oxide-polyethylene oxide tere...
In this work, various overlaps between plasma technology and electrospinning process and products ar...
Morphology, crystallinity, thermal, and mechanical properties of nanofibrous mats are known to highl...
Summary form only given. Poly-L-lactic acid (PLLA) is a biocompatible and biodegradable polymer, whi...
Summary form only given. Poly-L-lactic acid (PLLA) is a biocompatible and biodegradable polymer, whi...
Morphology, crystallinity, thermal, and mechanical properties of nanofibrous mats are known to highl...
none7noThis work is focused on the use of non-thermal plasma to improve the electrospinnability of ...
This study focuses on the enhanced electrospinning of 300-Polyethylene oxide-polyethylene oxide tere...