AbstractThe selection of a solvent or a solvent system is a fundamental and a crucial step in spinning fibres using a selected process. Solvent selection determines the critical minimum polymer concentration and the critical minimum chain entanglement which allows the spinning of nanofibres rather than other hybrid morphologies such as beaded structures. Pressurised gyration, which simultaneously combines the use of gas pressure and rotation, is used as the processing and forming route for spinning fibres in this work. This study investigates 23 different solvents and solvent systems spread on a wide area of a Teas graph and able to dissolve the functional polymer polyethylene (terephthalate) (PET) and spin products by the application of pr...
199-210Poly (ethylene terephthalate) fibre (PET) is the commonly used man-made fibre for majority o...
Fibres show promising applications such as textiles, filtration, sensing and tissue engineering. In ...
Nanofibres from mucoadhesive polymers could combine their material properties with unique structural...
AbstractThe selection of a solvent or a solvent system is a fundamental and a crucial step in spinni...
Polymeric fibres are used for essential and sophisticated practical applications such as nanosensors...
This work focuses on forming bead on string poly(caprolactone) (PCL) by using gyration under pressur...
A new route consisting of simultaneous centrifugal spinning and solution blowing to form polymer nan...
The fabrication of polymeric micro/nanofibers is gaining attention due to their use in an array of a...
Forming polymeric core–sheath nanofibers is gaining prominence owing to their numerous potential app...
Core-sheath fibres of two polymers were generated using a novel set-up where rotating speed and pres...
Electrospun poly(ethylene terephthalate) (PET) fibers were prepared from a trifluoroacetic acid (TF...
Polymeric nanofibres can be produced from a variety of methods such as electrospinning and melt blow...
The relationship between processing conditions, structure and morphology are key issues to understa...
Polymeric nanofibres with smooth, rough and porous surfaces were prepared by pressurised gyration, w...
High speed melt spinning of linear, branched, and high molecular weight poly(ethylene terephthalate)...
199-210Poly (ethylene terephthalate) fibre (PET) is the commonly used man-made fibre for majority o...
Fibres show promising applications such as textiles, filtration, sensing and tissue engineering. In ...
Nanofibres from mucoadhesive polymers could combine their material properties with unique structural...
AbstractThe selection of a solvent or a solvent system is a fundamental and a crucial step in spinni...
Polymeric fibres are used for essential and sophisticated practical applications such as nanosensors...
This work focuses on forming bead on string poly(caprolactone) (PCL) by using gyration under pressur...
A new route consisting of simultaneous centrifugal spinning and solution blowing to form polymer nan...
The fabrication of polymeric micro/nanofibers is gaining attention due to their use in an array of a...
Forming polymeric core–sheath nanofibers is gaining prominence owing to their numerous potential app...
Core-sheath fibres of two polymers were generated using a novel set-up where rotating speed and pres...
Electrospun poly(ethylene terephthalate) (PET) fibers were prepared from a trifluoroacetic acid (TF...
Polymeric nanofibres can be produced from a variety of methods such as electrospinning and melt blow...
The relationship between processing conditions, structure and morphology are key issues to understa...
Polymeric nanofibres with smooth, rough and porous surfaces were prepared by pressurised gyration, w...
High speed melt spinning of linear, branched, and high molecular weight poly(ethylene terephthalate)...
199-210Poly (ethylene terephthalate) fibre (PET) is the commonly used man-made fibre for majority o...
Fibres show promising applications such as textiles, filtration, sensing and tissue engineering. In ...
Nanofibres from mucoadhesive polymers could combine their material properties with unique structural...