Developing high energy density supercapacitors is of great importance to the transportation, consumer electronics, and micro-grid energy storage sectors. Recently, the development of high voltage organic electrolyte based supercapacitor devices has been gaining much attention. Among them, there is an on-going intense interest in investigating high capacity lithium ion storage anode materials in hybrid supercapacitors. However, developing high capacity cathode materials for high voltage organic electrolyte supercapacitor devices is rarely investigated. The low electrical double layer capacitances of carbon cathode electrodes, which are widely used in current supercapacitor devices, are often the limiting bottleneck. In this contribution, we ...
The combination of a vertically aligned carbon nanotube array (CNTA) framework and electrodeposition...
In the context of fossil-fuel shortage and climate change, the production, conversion, storage and d...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Developing high energy density supercapacitors is of great importance to the transportation, consume...
The measured capacitance, modulus and strength of carbon nanotube-polyaniline (CNT-PANI) composite e...
In the mainstream renewable and sustainable nanotechnology, supercapacitors have emerged as critical...
In this study, the composite formations of polyaniline (PANI)/multi-walled carbon nanotube (MWCNT), ...
Polyaniline (PANI) is one of the most widely used organic electrode materials for supercapacitors. I...
In recent decades, one of the major challenges is to prov-ide highly efficient, low-cost, and enviro...
Poor stability restricts the use of polyaniline as a transition-metal-free, high-capacity electrode ...
Supercapacitors are electrochemical devices intended to combine the high power density of conventio...
Flexible supercapacitors (SCs) with compact configuration are ideal energy storage devices for porta...
The poor cycling stability of polyaniline (PANI) limits its practical application as a pseudocapacit...
For the development of light, flexible, and wearable electronic devices, it is crucial to develop en...
Future societal and environmental needs have called in for a need to develop more efficient and sust...
The combination of a vertically aligned carbon nanotube array (CNTA) framework and electrodeposition...
In the context of fossil-fuel shortage and climate change, the production, conversion, storage and d...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Developing high energy density supercapacitors is of great importance to the transportation, consume...
The measured capacitance, modulus and strength of carbon nanotube-polyaniline (CNT-PANI) composite e...
In the mainstream renewable and sustainable nanotechnology, supercapacitors have emerged as critical...
In this study, the composite formations of polyaniline (PANI)/multi-walled carbon nanotube (MWCNT), ...
Polyaniline (PANI) is one of the most widely used organic electrode materials for supercapacitors. I...
In recent decades, one of the major challenges is to prov-ide highly efficient, low-cost, and enviro...
Poor stability restricts the use of polyaniline as a transition-metal-free, high-capacity electrode ...
Supercapacitors are electrochemical devices intended to combine the high power density of conventio...
Flexible supercapacitors (SCs) with compact configuration are ideal energy storage devices for porta...
The poor cycling stability of polyaniline (PANI) limits its practical application as a pseudocapacit...
For the development of light, flexible, and wearable electronic devices, it is crucial to develop en...
Future societal and environmental needs have called in for a need to develop more efficient and sust...
The combination of a vertically aligned carbon nanotube array (CNTA) framework and electrodeposition...
In the context of fossil-fuel shortage and climate change, the production, conversion, storage and d...
Electrode materials are the most important factors to verify the properties of the electrochemical s...