The booming demand for energy storage has driven the rapid development of energy storage devices such as supercapacitors, and the research on high-performance electrode materials, a key component of supercapacitors, has gained tremendous attention. In this research, phenolic resin-based multi-porous carbon nanofibers have been prepared by electrospinning, curing, carbonization and activation and then employed as advanced electrode materials in supercapacitors. We demonstrate that the material is nano-scale continuous fiber, and its surface has pore distribution of different sizes. It delivers a high specific capacitance of 242 F g−1 at a current density of 0.2 A g−1 and maintains 148 F g−1 even at a high current density of 20 A g−1. Moreove...
Biomass-derived carbons have been extensively researched as electrode material for energy storage an...
Porous carbon nanofibers (PCNFs) were produced from polyacrylonitrile (PAN)/polyvinyl alcohol (PVA) ...
The objective of this work is to electrospin poly(acrylonitrile) (PAN) based nanofibers with control...
The booming demand for energy storage has driven the rapid development of energy storage devices suc...
Fabrication of novel three-dimensional material architectures is essential for successful developmen...
In this work, Carbon Nanofiber mates (CNF) were fabricated by carbonization of electrospun non-condu...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
Supercapacitors (also known as ultracapacitors) are considered to be the most promising approach to ...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
Free-standing porous carbon nanofiber networks (CFNs) were synthesized by electrospinning method and...
We develop supercapacitor (SC) devices with large per-area capacitances by utilizing three-dimension...
Active carbon nanofibers (CNFs) with porous structure show highly electrochemical double-layer capac...
Porous carbon nanofibers (CNF) with high surface area were synthesized by electrospinning a mixture ...
With the great demand for energy storage devices with much higher energy density, better power perfo...
Biomass-derived carbons have been extensively researched as electrode material for energy storage an...
Porous carbon nanofibers (PCNFs) were produced from polyacrylonitrile (PAN)/polyvinyl alcohol (PVA) ...
The objective of this work is to electrospin poly(acrylonitrile) (PAN) based nanofibers with control...
The booming demand for energy storage has driven the rapid development of energy storage devices suc...
Fabrication of novel three-dimensional material architectures is essential for successful developmen...
In this work, Carbon Nanofiber mates (CNF) were fabricated by carbonization of electrospun non-condu...
Carbon nanofibers with inter-bonded fibrous structure show high supercapacitor performance when bein...
Supercapacitors (also known as ultracapacitors) are considered to be the most promising approach to ...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
High performance capacitor devices based on electric double layer capacitor (EDLC) principle has w...
Free-standing porous carbon nanofiber networks (CFNs) were synthesized by electrospinning method and...
We develop supercapacitor (SC) devices with large per-area capacitances by utilizing three-dimension...
Active carbon nanofibers (CNFs) with porous structure show highly electrochemical double-layer capac...
Porous carbon nanofibers (CNF) with high surface area were synthesized by electrospinning a mixture ...
With the great demand for energy storage devices with much higher energy density, better power perfo...
Biomass-derived carbons have been extensively researched as electrode material for energy storage an...
Porous carbon nanofibers (PCNFs) were produced from polyacrylonitrile (PAN)/polyvinyl alcohol (PVA) ...
The objective of this work is to electrospin poly(acrylonitrile) (PAN) based nanofibers with control...