In this study, pyrrole monomer is polymerized on carbon nanofibres (CNFs) via electropolymerization. This is a new technique to produce a chemically bonded CNF–polypyrrole composite. Deposition of the polypyrrole (PPy) on the nanofibres was optimized by varying the degree of deposition and deposition speed. Optimization studies have proven that the high deposition amounts result in blocks of polymers, which can be overcome through tuning the degree of polymerization by means number of cycles of electropolymerization and the scan rate of the electropolymerization
A simple catalyst-assisted electrochemical deposition technique has been implemented to control the ...
Composite electrodes for supercapacitors are prepared via chemical polymerization of pyrrole (Py) on...
Abstract A nanocomposite comprising of polypyrrole and reduced graphene oxide was electrodeposited o...
Composite electrodes for supercapacitors were prepared via electrochemical polymerization onto activ...
Polypyrrole has been a promising conjugated polymer for application in electrochemical energy storag...
Polypyrrole has been a promising conjugated polymer for application in electrochemical energy storag...
A conducting polymer layer was introduced into the pore surface of mesoporous carbon via vapor infil...
With the great demand for energy storage devices with much higher energy density, better power perfo...
Simple and inexpensive electrodeposition method for the synthesis of polypyrrole (PPy) nanobricks ha...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
A detailed study of the effects of different electropolymerization methods on the supercapacitive pr...
A simple catalyst-assisted electrochemical deposition technique has been implemented to control the ...
Composite electrodes for supercapacitors are prepared via chemical polymerization of pyrrole (Py) on...
Abstract A nanocomposite comprising of polypyrrole and reduced graphene oxide was electrodeposited o...
Composite electrodes for supercapacitors were prepared via electrochemical polymerization onto activ...
Polypyrrole has been a promising conjugated polymer for application in electrochemical energy storag...
Polypyrrole has been a promising conjugated polymer for application in electrochemical energy storag...
A conducting polymer layer was introduced into the pore surface of mesoporous carbon via vapor infil...
With the great demand for energy storage devices with much higher energy density, better power perfo...
Simple and inexpensive electrodeposition method for the synthesis of polypyrrole (PPy) nanobricks ha...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Energy storage systems such as ultracapacitors (UCs) have gained popularity due to their combination...
Micrometre-scale polypyrrole (PPy) structures are synthesised for electrochemical supercapacitor app...
A detailed study of the effects of different electropolymerization methods on the supercapacitive pr...
A simple catalyst-assisted electrochemical deposition technique has been implemented to control the ...
Composite electrodes for supercapacitors are prepared via chemical polymerization of pyrrole (Py) on...
Abstract A nanocomposite comprising of polypyrrole and reduced graphene oxide was electrodeposited o...