A green asymmetric supercapacitor with high energy density has been developed using birnessite-type ultrathin porous MnO2 nanoflowers (UBMNFs) as positive electrode and functional mesoporous carbon nanotubes (FMCNTs) as negative electrode in 1 M Na2SO4 electrolyte. Both of the electrode materials possess excellent electrochemical performances, with high surface areas and narrow pore size distributions. More significantly, the assembled asymmetric supercapacitor with optimal mass ratio can be cycled reversibly in the high-potential range of 0–2.0 V and exhibits an excellent energy density as high as 47.4 W h kg−1, which is much higher than those of symmetric supercapacitors based on UBMNFs//UBMNFs and FMCNTs//FMCNTs supercapacitors. Furtherm...
Graphene-like porous carbon nanosheets (GPCNs) have been proved to have great potential in high-rate...
A porous nanostructure and high mass loading are crucial for a pseudocapacitor to achieve a good ele...
Aqueous asymmetric supercapacitors (AASCs) can have high voltages and high energy densities. However...
A High energy, asymmetric supercapacitor (ASC) has been constructed using porous manganese oxide (Mn...
We have successfully fabricated an asymmetric supercapacitor with high energy and power densities us...
Asymmetric supercapacitors employ two different electrode materials with different working potential...
Porous nanotubes comprised of MnO2 nanosheets were fabricated with a one-pot hydrothermal method usi...
In this work, MnO2/GO (graphene oxide) composites with novel multilayer nanoflake structure, and a c...
We demonstrate the synthesis of ultrathin MnO2 nanoflakes grown on N-doped carbon nanoboxes, forming...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
Designing and fabricating the electrochemical active materials with outstanding electrochemical perf...
Asymmetric supercapacitors with high energy density are fabricated using a self-assembled reduced gr...
Growing MnO nanofibers on graphitic hollow carbon spheres (GHCS) is conducted by refluxing GHCS in a...
Flexible fiber-shaped supercapacitors hold promising potential in the area of portable and wearable ...
Graphene-like porous carbon nanosheets (GPCNs) have been proved to have great potential in high-rate...
A porous nanostructure and high mass loading are crucial for a pseudocapacitor to achieve a good ele...
Aqueous asymmetric supercapacitors (AASCs) can have high voltages and high energy densities. However...
A High energy, asymmetric supercapacitor (ASC) has been constructed using porous manganese oxide (Mn...
We have successfully fabricated an asymmetric supercapacitor with high energy and power densities us...
Asymmetric supercapacitors employ two different electrode materials with different working potential...
Porous nanotubes comprised of MnO2 nanosheets were fabricated with a one-pot hydrothermal method usi...
In this work, MnO2/GO (graphene oxide) composites with novel multilayer nanoflake structure, and a c...
We demonstrate the synthesis of ultrathin MnO2 nanoflakes grown on N-doped carbon nanoboxes, forming...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
All-solid-state supercapacitors constructed with effectively composited materials are required urgen...
Designing and fabricating the electrochemical active materials with outstanding electrochemical perf...
Asymmetric supercapacitors with high energy density are fabricated using a self-assembled reduced gr...
Growing MnO nanofibers on graphitic hollow carbon spheres (GHCS) is conducted by refluxing GHCS in a...
Flexible fiber-shaped supercapacitors hold promising potential in the area of portable and wearable ...
Graphene-like porous carbon nanosheets (GPCNs) have been proved to have great potential in high-rate...
A porous nanostructure and high mass loading are crucial for a pseudocapacitor to achieve a good ele...
Aqueous asymmetric supercapacitors (AASCs) can have high voltages and high energy densities. However...