Conducting polymers have received increasing attention in both fundamental research and various fields of application in recent decades, ranging in use from biomaterials to renewable energy storage devices. Processing of conducting polymers into fibrillar structures through spinning has provided some unique capabilities to their final applications. Compared with non fibrillar forms, conducting polymer fibres are expected to display improved properties arising mainly from their low dimensions, well-oriented polymer chains, light weight and large surface area to volume ratio. Spinning methods have been employed effectively to produce technological conducting fibres from nanoscale to hundreds of micrometre sizes with controlled properties. Thi...
Developmental work in the field of multifunctional hybrid fibres has revealed a number of characteri...
This thesis explores the manufacturing and characterisation of melt spun electrically conductive pol...
We report on the unexpected finding of nanoscale fibers with a diameter down to 25 nm that emerge fr...
Polymer nanofibers, with diameters in the nanometer range, possess larger surface areas per unit mas...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conductive fibers show potential applications in different areas. In this thesis, cellulose and its ...
Textiles have traditionally been employed over the centuries with great utility in areas as diverse ...
The nature of textile materials have started to improve with the development of man made fibres whic...
The new age of wearable technology has popularized the field of smart textiles among researchers. In...
Nano- and micro- fibers of conjugated polymer semiconductors are particularly interesting both for a...
As smart application has been developed, electrically conductive polymer nanocomposites with a shape...
Conducting polymers are materials that possess the electrical conductivity of metals while still ret...
In the present study electrical conductive and piezoelectric textile fibres have been manufactured a...
Developmental work in the field of multifunctional hybrid fibres has revealed a number of characteri...
This thesis explores the manufacturing and characterisation of melt spun electrically conductive pol...
We report on the unexpected finding of nanoscale fibers with a diameter down to 25 nm that emerge fr...
Polymer nanofibers, with diameters in the nanometer range, possess larger surface areas per unit mas...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conducting polymers have been widely investigated for both academic and indus-trial purposes over tw...
Conductive fibers show potential applications in different areas. In this thesis, cellulose and its ...
Textiles have traditionally been employed over the centuries with great utility in areas as diverse ...
The nature of textile materials have started to improve with the development of man made fibres whic...
The new age of wearable technology has popularized the field of smart textiles among researchers. In...
Nano- and micro- fibers of conjugated polymer semiconductors are particularly interesting both for a...
As smart application has been developed, electrically conductive polymer nanocomposites with a shape...
Conducting polymers are materials that possess the electrical conductivity of metals while still ret...
In the present study electrical conductive and piezoelectric textile fibres have been manufactured a...
Developmental work in the field of multifunctional hybrid fibres has revealed a number of characteri...
This thesis explores the manufacturing and characterisation of melt spun electrically conductive pol...
We report on the unexpected finding of nanoscale fibers with a diameter down to 25 nm that emerge fr...