We use a combination of microscopy, x-ray scattering and neutron scattering to show how structure develops in micro and nano-size polymer fibres prepared by electrospinning. The technique has been applied to a range of different polymers, an amorphous system (polystyrene), a crystallisable polymer (poly-epsilon-caprolactone), a composite systems (polyethylene oxide or poly vinyl alcohol containing polypyrrole) and consider the possibility of self assembly (gelatin)
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...
The electrospinning of urethane based low molecular weight polymers differing only in the nature of ...
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...
We use a combination of microscopy, x-ray scattering and neutron scattering to show how structure de...
Gelatin fibres have been successfully electrospun from water by heating a gelatin solution above the...
Electrospinning is a method used to produce nanoscale to microscale sized polymer fibres. In this st...
Small angle neutron scattering techniques were used to quantify the size and shape of the chain conf...
Electrospinning is a method used to produce nanoscale to microscale sized polymer fibres. In this s...
Electrospinning is a technique employed to produce nanoscale to microscale sized fibres by the appli...
Electrospinning is a technique that involves the production of nanoscale to microscale sized polymer...
Simultaneous SAXS-WAXD measurements are carried out to gain information about the microstructure and...
The electrospinning technique transforms a polymer solution of sufficient concentration from a sub-m...
Electrospinning is a process of creating solid continuous fibers of material with diameter in the mi...
The development of internal microstructure in electrospun fibers has been investigated both experime...
The bead to bead-free fibers transition for electrospun filaments was investigated for well-defined ...
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...
The electrospinning of urethane based low molecular weight polymers differing only in the nature of ...
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...
We use a combination of microscopy, x-ray scattering and neutron scattering to show how structure de...
Gelatin fibres have been successfully electrospun from water by heating a gelatin solution above the...
Electrospinning is a method used to produce nanoscale to microscale sized polymer fibres. In this st...
Small angle neutron scattering techniques were used to quantify the size and shape of the chain conf...
Electrospinning is a method used to produce nanoscale to microscale sized polymer fibres. In this s...
Electrospinning is a technique employed to produce nanoscale to microscale sized fibres by the appli...
Electrospinning is a technique that involves the production of nanoscale to microscale sized polymer...
Simultaneous SAXS-WAXD measurements are carried out to gain information about the microstructure and...
The electrospinning technique transforms a polymer solution of sufficient concentration from a sub-m...
Electrospinning is a process of creating solid continuous fibers of material with diameter in the mi...
The development of internal microstructure in electrospun fibers has been investigated both experime...
The bead to bead-free fibers transition for electrospun filaments was investigated for well-defined ...
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...
The electrospinning of urethane based low molecular weight polymers differing only in the nature of ...
*S Supporting Information ABSTRACT: The properties of polymeric nanofibers can be tailored and enhan...