Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapacitors. However, they generally suffer from unsatisfactory energy density due to low specific capacitance arising from inferior conductivity and insufficient ionic diffusion rate. Here a surface modification method is conducted after the annealing of ZIF-67 precursor to produce hydrophilic, porous and heteroatom-doped carbon foam. On top of enhanced area capacitance, widened voltage window of -1.3-0V (vs saturated calomel electrode) can be achieved through electrochemical reduction to suppress the hydrogen evolution reaction. The optimized reduced porous carbon foam on carbon cloth exhibits a maximum area capacitance of 1049 mF/cm(2) at an ap...
Commercial carbon clothes have the potential to be utilized as supercapacitor electrodes due to thei...
© 2018 Elsevier Ltd Porous carbon with high surface area and low cost has emerged as promising alter...
Aqueous zinc ion hybrid supercapacitors (ZHSCs) have emerged and are regarded as promising candidate...
Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapa...
Aqueous supercapacitors are among the most promising materials for clean and renewable energy storag...
A hierarchically porous 3D starch-derived carbon foam (SCF) with a high specific surface area (up to...
The design of advanced high‐energy‐density supercapacitors requires the design of unique materials t...
The microstructure of carbon materials in terms of its specific surface area and pore structure by i...
The globally increasing energy demand that results from the rapid development of modern society has ...
Combining high specific surface area (SSA) and superior electrical conductivity together at bulk sta...
Template-free synthesis of advanced supercapacitor carbon with tunable interpenetrating micromesopor...
A new hierarchically porous carbon has been synthesized with self-template of silica phase from a co...
It is a big challenge to improve the energy density of the carbon-based supercapacitors for wide app...
Multiple heteroatom doping represents an effective strategy for improving the supercapacitive perfor...
A biomass-derived 3D porous carbon (3DPC) framework with multi-heteroatom (N, O, and S) doping was e...
Commercial carbon clothes have the potential to be utilized as supercapacitor electrodes due to thei...
© 2018 Elsevier Ltd Porous carbon with high surface area and low cost has emerged as promising alter...
Aqueous zinc ion hybrid supercapacitors (ZHSCs) have emerged and are regarded as promising candidate...
Carbon anodes have been widely utilized for the fabrication of high-performance asymmetric supercapa...
Aqueous supercapacitors are among the most promising materials for clean and renewable energy storag...
A hierarchically porous 3D starch-derived carbon foam (SCF) with a high specific surface area (up to...
The design of advanced high‐energy‐density supercapacitors requires the design of unique materials t...
The microstructure of carbon materials in terms of its specific surface area and pore structure by i...
The globally increasing energy demand that results from the rapid development of modern society has ...
Combining high specific surface area (SSA) and superior electrical conductivity together at bulk sta...
Template-free synthesis of advanced supercapacitor carbon with tunable interpenetrating micromesopor...
A new hierarchically porous carbon has been synthesized with self-template of silica phase from a co...
It is a big challenge to improve the energy density of the carbon-based supercapacitors for wide app...
Multiple heteroatom doping represents an effective strategy for improving the supercapacitive perfor...
A biomass-derived 3D porous carbon (3DPC) framework with multi-heteroatom (N, O, and S) doping was e...
Commercial carbon clothes have the potential to be utilized as supercapacitor electrodes due to thei...
© 2018 Elsevier Ltd Porous carbon with high surface area and low cost has emerged as promising alter...
Aqueous zinc ion hybrid supercapacitors (ZHSCs) have emerged and are regarded as promising candidate...