A novel nanofibrous gel electrolyte was prepared via gelatin electrospinning for use as a nonaqueous electrolyte in electric double-layer capacitors (EDLCs). An electrospinning technique with a 25 wt% gelatin solution was applied to produce gelatin electrospun (GES) nanofiber electrolytes. Structural analysis of the GES products showed a clearly nanofibrous structure with fiber diameters in the 306.2–428.4 nm range and exhibiting high thermal stability, high tensile strength, and a stable form of nanofibrous structure after immersion in 1-ethyl-3-methylimidazolium tetrafluoroborate (EMImBF4). After testing over a range of spinning times, GES electrolytes that were produced at 25 min (GES-25) had a suitable thickness for the assembly of EDLC...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
A novel material, fluoride-containing gelatin nanofiber scaffold, was prepared by electrospinning pr...
A major limitation of gelatin feedstocks for industrial food and pharmaceutical applications is the ...
Gelatin fibers were prepared by electrospinning of gelatin/acetic acid/water ternary mixtures with t...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The feasibility of using Phosphate Buffer Saline (PBS)/ethanol mixtures as a benign solvent to elect...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Abstract This study explores the fabrication of nanofibers using different types of gelatins, includ...
Electrospun gelatin(Gel) nanofibers scaffold has such defects as poor mechanical property and quick ...
The development of suitable biomimetic scaffolds is a fundamental requirement of tissue engineering....
Purpose: Electrospinning is a versatile technique for producing polymeric nanofibers by the applicat...
The gelatin–glutaraldehyde (gelatin–GA) nanofibers were electrospun in order to overcome...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
Electrospinning is a simple, versatile and widely accepted technique to produce ultra-fine fibers ra...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
A novel material, fluoride-containing gelatin nanofiber scaffold, was prepared by electrospinning pr...
A major limitation of gelatin feedstocks for industrial food and pharmaceutical applications is the ...
Gelatin fibers were prepared by electrospinning of gelatin/acetic acid/water ternary mixtures with t...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The feasibility of using Phosphate Buffer Saline (PBS)/ethanol mixtures as a benign solvent to elect...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Abstract This study explores the fabrication of nanofibers using different types of gelatins, includ...
Electrospun gelatin(Gel) nanofibers scaffold has such defects as poor mechanical property and quick ...
The development of suitable biomimetic scaffolds is a fundamental requirement of tissue engineering....
Purpose: Electrospinning is a versatile technique for producing polymeric nanofibers by the applicat...
The gelatin–glutaraldehyde (gelatin–GA) nanofibers were electrospun in order to overcome...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
Electrospinning is a simple, versatile and widely accepted technique to produce ultra-fine fibers ra...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
A novel material, fluoride-containing gelatin nanofiber scaffold, was prepared by electrospinning pr...