Supercapacitors have attracted intense attention due to their great potential to meet the demand of both high energy density and power density in many advanced technologies. Various carbon-based nanocomposites are currently pursued as supercapacitor electrodes because of the synergistic effect between carbon (high power density) and pseudo-capacitive nanomaterials (high energy density). This feature article aims to review most recent progress on 3D (3D) carbon based nanostructures for advanced supercapacitor applications in view of their structural intertwinement which not only create the desired hierarchical porous channels, but also possess higher electrical conductivity and better structural mechanical stability. The carbon nanostructure...
In this review article, symmetric device performances of carbon based nanostructures were reviewed a...
Here, we design and develop high-power electric double-layer capacitors (EDLCs) using carbon-based t...
A novel nano-porous 3D architecture of N-doped carbon nanorods arrays grown on the surface of graphe...
Supercapacitors have attracted intense attention due to their great potential to meet the demand of ...
Supercapacitors (SCs) have attracted extensive attention due to their ultrahigh power density, fast ...
Nanostructured synthetic carbon allotropes are considered good candidates for applications in electr...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
3D porous and self-supported carbon hybrids are promising electrode materials for supercapacitor app...
One of the most challenging issues in developing supercapacitor technology is the rational design an...
Supercapacitors fill the power and energy gap between electrolytic capacitors and batteries. The ene...
A high-performance carbon electrode for electric double layer capacitors was designed to guarantee f...
Abstract A 3D CNT/few layered graphene construct (CNT−FLG) with mesopore structure was fabricated an...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
In this review article, symmetric device performances of carbon based nanostructures were reviewed a...
Here, we design and develop high-power electric double-layer capacitors (EDLCs) using carbon-based t...
A novel nano-porous 3D architecture of N-doped carbon nanorods arrays grown on the surface of graphe...
Supercapacitors have attracted intense attention due to their great potential to meet the demand of ...
Supercapacitors (SCs) have attracted extensive attention due to their ultrahigh power density, fast ...
Nanostructured synthetic carbon allotropes are considered good candidates for applications in electr...
Rational design of advanced carbon nanomaterials with a balanced mesoporosity to microporosity is hi...
3D porous and self-supported carbon hybrids are promising electrode materials for supercapacitor app...
One of the most challenging issues in developing supercapacitor technology is the rational design an...
Supercapacitors fill the power and energy gap between electrolytic capacitors and batteries. The ene...
A high-performance carbon electrode for electric double layer capacitors was designed to guarantee f...
Abstract A 3D CNT/few layered graphene construct (CNT−FLG) with mesopore structure was fabricated an...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
A carbon electrode was designed to guarantee flexibility of symmetric electric double layer capacito...
In this review article, symmetric device performances of carbon based nanostructures were reviewed a...
Here, we design and develop high-power electric double-layer capacitors (EDLCs) using carbon-based t...
A novel nano-porous 3D architecture of N-doped carbon nanorods arrays grown on the surface of graphe...