Carbon materials derived from biomass are promising electrode materials for supercapacitor application due to their specific porosity, low cost and electrochemical stability. Herein, a hierarchical porous carbon derived from corncob was developed for use as electrodes. Benefitting from its hierarchical porosity, inherited from the natural structure of corncob, high BET surface area (1471.4 m2·g−1) and excellent electrical conductivity, the novel carbon material exhibited a specific capacitance of 293 F·g−1 at 1 A·g−1 in 6 M KOH electrolyte and maintained at 195 F·g−1 at 5 A·g−1. In addition, a two-electrode device was assembled and delivered an energy density of 20.15 Wh·kg−1 at a power density of 500 W·kg−1 and an outstanding stability of ...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
As worldwide reserves of fossil fuel decrease and the price increase. Biomass is attracting more and...
Recently, interest in the use of carbonaceous materials derived from sustainable biomass wastes for ...
Corncob carbon prepared by means of (KOH) chemical activation method at 600 �C for 1 h is shown as a...
Porous carbons derived from agricultural waste biomass are ideal active materials for eco-friendly a...
Porous carbons derived from agricultural waste biomass are ideal active materials for eco-friendly a...
In this study, corncob-based activated carbons (ACs) were prepared by carbon dioxide (CO2) activatio...
Porous carbon is prepared from the cornstarch biopolymer by simple carbonization process initially a...
Porous carbons are considered as promising electrode materials for supercapacitors due to their exce...
It is a long-lasting challenge to design and synthesize electric double-layered electrode materials ...
Efforts made in this current study focus on the development of a novel, simple, cost-effective yet e...
Porous carbon has been one desirable electrode material for supercapacitors, but it is still a chall...
Significant work is done in converting bio-waste into energy storage material as electrode of Superc...
Electrical double layer capacitor (EDLC) is a major group of supercapacitors. The capacitance of EDL...
Varieties of natural biomass have been utilized to prepare porous carbon materials for supercapacito...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
As worldwide reserves of fossil fuel decrease and the price increase. Biomass is attracting more and...
Recently, interest in the use of carbonaceous materials derived from sustainable biomass wastes for ...
Corncob carbon prepared by means of (KOH) chemical activation method at 600 �C for 1 h is shown as a...
Porous carbons derived from agricultural waste biomass are ideal active materials for eco-friendly a...
Porous carbons derived from agricultural waste biomass are ideal active materials for eco-friendly a...
In this study, corncob-based activated carbons (ACs) were prepared by carbon dioxide (CO2) activatio...
Porous carbon is prepared from the cornstarch biopolymer by simple carbonization process initially a...
Porous carbons are considered as promising electrode materials for supercapacitors due to their exce...
It is a long-lasting challenge to design and synthesize electric double-layered electrode materials ...
Efforts made in this current study focus on the development of a novel, simple, cost-effective yet e...
Porous carbon has been one desirable electrode material for supercapacitors, but it is still a chall...
Significant work is done in converting bio-waste into energy storage material as electrode of Superc...
Electrical double layer capacitor (EDLC) is a major group of supercapacitors. The capacitance of EDL...
Varieties of natural biomass have been utilized to prepare porous carbon materials for supercapacito...
In this research study, we have presented a simple two-step synthesis path to producing a cost-effec...
As worldwide reserves of fossil fuel decrease and the price increase. Biomass is attracting more and...
Recently, interest in the use of carbonaceous materials derived from sustainable biomass wastes for ...