Carbonised electrospun nanofibres are attractive for supercapacitors due to their relatively high surface area, facile production routes and flexibility. With the addition of materials such as manganese oxide (MnO), the specific capacitance of the carbon nanofibres can be further improved through fast surface redox reactions, however this can reduce the electrical conductivity. In this work, electrochemical 3D printing is used as a novel means of improving electrical conductivity and the current collector-electrode interfacial resistance through the deposition of highly controlled layers of copper. Neat carbonised electrospun electrodes made with a 30 wt% manganese acetylacetonate (MnACAC) and polyacrylonitrile precursor solution have a hyd...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
An easy approach to fabricating carbon fiber paper (CFP) based electrodes has been developed. This m...
Wearable electronics have attracted attention due to their many potential applications ranging from ...
We present an all-fiber flexible supercapacitor with composite nanofiber electrodes made via electro...
With the great demand for energy storage devices with much higher energy density, better power perfo...
A highly flexible electrochemical supercapacitor electrode was developed with a novel metal oxide-re...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
There is a growing interest in carbon nanofibre materials especially for applications that require h...
A highly flexible electrochemical supercapacitor electrode was developed with a novel metal oxide-re...
In this work, Carbon Nanofiber mates (CNF) were fabricated by carbonization of electrospun non-condu...
Electrochemical supercapacitors (ES), or ultracapacitors, store energy using either reversible adsor...
Supercapacitors (SCs) are deemed as the promising energy storage devices because of their remarkable...
This research essentially focuses on the fabrication of a carbon-based flexible energy storage devi...
The combination of graphene nanoplatelets and carbon nanofibers were successfully fabricated by util...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
An easy approach to fabricating carbon fiber paper (CFP) based electrodes has been developed. This m...
Wearable electronics have attracted attention due to their many potential applications ranging from ...
We present an all-fiber flexible supercapacitor with composite nanofiber electrodes made via electro...
With the great demand for energy storage devices with much higher energy density, better power perfo...
A highly flexible electrochemical supercapacitor electrode was developed with a novel metal oxide-re...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
There is a growing interest in carbon nanofibre materials especially for applications that require h...
A highly flexible electrochemical supercapacitor electrode was developed with a novel metal oxide-re...
In this work, Carbon Nanofiber mates (CNF) were fabricated by carbonization of electrospun non-condu...
Electrochemical supercapacitors (ES), or ultracapacitors, store energy using either reversible adsor...
Supercapacitors (SCs) are deemed as the promising energy storage devices because of their remarkable...
This research essentially focuses on the fabrication of a carbon-based flexible energy storage devi...
The combination of graphene nanoplatelets and carbon nanofibers were successfully fabricated by util...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
Polymorphous supercapacitors were constructed from flexible three-dimensional carbon network/polyani...
An easy approach to fabricating carbon fiber paper (CFP) based electrodes has been developed. This m...
Wearable electronics have attracted attention due to their many potential applications ranging from ...