We report on the successful application of porous hollow carbon nanospheres consisting of graphitic shells with a hierarchical porosity that were obtained by carbonizing an iron-containing commercially available metal-organic framework, as active material for supercapacitors. The influence of basic key parameters, such as the degree of graphitization and the accessible surface area of the carbons obtained at different temperatures, on the electrochemical performance is discussed in-depth. A high specific capacitance of 91 F g-1 in an aqueous electrolyte and 156 F g-1 using an ionic liquid is achieved. Furthermore a very steady specific capacitance over the course of 10,000 charge-discharge cycles is demonstrated. In addition, electrochemica...
Interconnected close-packed nitrogen-doped porous carbon polyhedrons (NCPs) confined in two-dimensio...
Carbon-based materials, as one of the most important electrode materials for supercapacitors, have a...
Carbon nanofibers (CNFs) are a fascinating electrode material for energy storage devices due to thei...
Metal-organic frameworks (MOFs) derived porous carbons are promising electrode materials in electroc...
© 2018 Elsevier B.V. Electrode material is essential for supercapacitors which are an important ener...
Electric double layer capacitors (or supercapacitors) store charges through the physisorption of ele...
Ultrathin, uniform and monodisperse hollow mesoporous carbon nanospheres (HMCNs) with a thickness of...
Hollow, spherical nitrogen-rich porous carbon shells were prepared as supercapacitor electrode mater...
N-Doped mesoporous hollow carbon spheres (MHCSs) with different inner structures have attracted incr...
Hitherto, many reports on composite materials for electrochemical applications are based on one-dime...
Nanostructured synthetic carbon allotropes are considered good candidates for applications in electr...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
The design of advanced high‐energy‐density supercapacitors requires the design of unique materials t...
A straightforward one-pot approach for the synthesis of highly porous carbon nanosheets with an exce...
Three-dimensional, hierarchically ordered, porous carbon (HOPC) with designed porous textures, servi...
Interconnected close-packed nitrogen-doped porous carbon polyhedrons (NCPs) confined in two-dimensio...
Carbon-based materials, as one of the most important electrode materials for supercapacitors, have a...
Carbon nanofibers (CNFs) are a fascinating electrode material for energy storage devices due to thei...
Metal-organic frameworks (MOFs) derived porous carbons are promising electrode materials in electroc...
© 2018 Elsevier B.V. Electrode material is essential for supercapacitors which are an important ener...
Electric double layer capacitors (or supercapacitors) store charges through the physisorption of ele...
Ultrathin, uniform and monodisperse hollow mesoporous carbon nanospheres (HMCNs) with a thickness of...
Hollow, spherical nitrogen-rich porous carbon shells were prepared as supercapacitor electrode mater...
N-Doped mesoporous hollow carbon spheres (MHCSs) with different inner structures have attracted incr...
Hitherto, many reports on composite materials for electrochemical applications are based on one-dime...
Nanostructured synthetic carbon allotropes are considered good candidates for applications in electr...
Supercapacitors, also called ultracapacitors or electrochemical capacitors, store electrical charge ...
The design of advanced high‐energy‐density supercapacitors requires the design of unique materials t...
A straightforward one-pot approach for the synthesis of highly porous carbon nanosheets with an exce...
Three-dimensional, hierarchically ordered, porous carbon (HOPC) with designed porous textures, servi...
Interconnected close-packed nitrogen-doped porous carbon polyhedrons (NCPs) confined in two-dimensio...
Carbon-based materials, as one of the most important electrode materials for supercapacitors, have a...
Carbon nanofibers (CNFs) are a fascinating electrode material for energy storage devices due to thei...