Polyaniline (PAni) is a conducting polymer which switches between distinct states exhibiting dramatically different properties. The colour, conductivity and redox state of PAni all depend on the local chemical environment of the material. Consequently PAni has great potential for sensing applications. The nanostructured form of PAni is particularly interesting as it provides a very large surface-to-volume ratio that can lead to dramatic enhancement of sensor sensitivity and response time. In this work, we focus on derivatising polyaniline nanofibres. Using the technique described, carboxylate terminated side-chains can be covalently bound to solution based fibres
A Polyaniline (PANI) nanofibers have been successfully synthesized by a facile rapid oxidative polym...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...
Polyaniline (PAni) is a conducting polymer which switches between distinct states exhibiting dramati...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
Polyaniline (PAni) is an example of a conducting polymer that can be switched between an insulating ...
Polyaniline (PAni) is an example of a conducting polymer that can be switched between an insulating ...
Abstract 15 A novel method for functionalising solution based polyaniline (PAni) nanofibres is repor...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
A Polyaniline (PANI) nanofibers have been successfully synthesized by a facile rapid oxidative polym...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...
Polyaniline (PAni) is a conducting polymer which switches between distinct states exhibiting dramati...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
A new method for covalently binding side-chains to the surface of solution based conducting polymer ...
Polyaniline (PAni) is an example of a conducting polymer that can be switched between an insulating ...
Polyaniline (PAni) is an example of a conducting polymer that can be switched between an insulating ...
Abstract 15 A novel method for functionalising solution based polyaniline (PAni) nanofibres is repor...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
Polyaniline nanofibres (PAni) can be surface modified to improve electroactivity over a broader pH r...
A Polyaniline (PANI) nanofibers have been successfully synthesized by a facile rapid oxidative polym...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...
The attachment of antibodies onto polyaniline nanofibres using covalent chemistry was investigated f...