Polycaprolactone (pcl) is widely used in the fabrication of nanofibers through electrospinning technique. Pcl is a biodegradable material that is economical, simple and can be scaled up for industrial production. In this study, pcl was infused with selenium nanoparticles (senps) via electrospinning to fabricate pcl-senps nanofiber. Field emission scanning electron microscopy (fesem) images of the samples revealed ‘aligned fibers’ was successfully fabricated with a diameter size of less than 350 nm and an average diameter of 185 nm. The presence of se in the nanofiber was confirmed by energy dispersive x-ray analysis (edx) and raman spectra. Based on the x-ray diffraction (xrd) pattern, the structure of pcl did not change and remains in the ...
Polymeric nanofibers are of great interest in biomedical applications, such as tissue engineering, d...
Electrospinning of a segmented copolymer having polyglycolide hard segments is successfully performe...
With the rapid advancement of regenerative medicine technologies, there is an urgent need for the de...
Polycaprolactone (PCL) is widely used in the fabrication of nanofibers through the electrospinning t...
Electrospinning is one of the techniques used in the fabrication of nanofibers. Polycaprolactone (PC...
Published ArticlePolycaprolactone (PCL) is one of the most used synthetic polymers for medical appli...
Scaffold design has pivotal role in tissue engineering. In the present study, We modified the s...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
The expanding interest in electrospinning fibers for bioengineering includes a significant use of po...
Nanofiber technology is an increasing interest in the biomedical field of tissue regeneration and dr...
Nanofiber technology has received significant attention as a possible solution to the current challe...
The hydrolysis of the polycaprolactone (PCL) as a function of the dissolution time in a formic/ acet...
In this study, polycaprolactone (PCL) nanofibrous mats (empty set: 144.2 +/- 3.4 nm) were fabricated...
This study examined the process of synthesising biodegradable nanofibres made up of polycaprolactone...
Antibacterial materials are particularly important nowadays in many applications such as disinfectin...
Polymeric nanofibers are of great interest in biomedical applications, such as tissue engineering, d...
Electrospinning of a segmented copolymer having polyglycolide hard segments is successfully performe...
With the rapid advancement of regenerative medicine technologies, there is an urgent need for the de...
Polycaprolactone (PCL) is widely used in the fabrication of nanofibers through the electrospinning t...
Electrospinning is one of the techniques used in the fabrication of nanofibers. Polycaprolactone (PC...
Published ArticlePolycaprolactone (PCL) is one of the most used synthetic polymers for medical appli...
Scaffold design has pivotal role in tissue engineering. In the present study, We modified the s...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
The expanding interest in electrospinning fibers for bioengineering includes a significant use of po...
Nanofiber technology is an increasing interest in the biomedical field of tissue regeneration and dr...
Nanofiber technology has received significant attention as a possible solution to the current challe...
The hydrolysis of the polycaprolactone (PCL) as a function of the dissolution time in a formic/ acet...
In this study, polycaprolactone (PCL) nanofibrous mats (empty set: 144.2 +/- 3.4 nm) were fabricated...
This study examined the process of synthesising biodegradable nanofibres made up of polycaprolactone...
Antibacterial materials are particularly important nowadays in many applications such as disinfectin...
Polymeric nanofibers are of great interest in biomedical applications, such as tissue engineering, d...
Electrospinning of a segmented copolymer having polyglycolide hard segments is successfully performe...
With the rapid advancement of regenerative medicine technologies, there is an urgent need for the de...