Major research efforts are being carried out for the technological advancement to an energetically sustainable society. However, for the full commercial integration of electrochemical energy storage devices, not only materials with higher performance should be designed and manufactured but also more competitive production techniques need to be developed. The laser processing technology is well extended at the industrial sector for the versatile and high throughput modification of a wide range of materials. In this work, a method based on laser processing is presented for the fabrication of hybrid electrodes composed of graphene nanowalls (GNWs) coated with different transition-metal oxide nanostructures for electrochemical capacitor (EC) ap...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...
The full knowledge of the charge storage mechanisms occurring in complex composite electrodes is key...
Porous multicomponent surface layers consisting of bimetallic oxide nanoparticles, carbon nanomateri...
Electrodes constituted by nitrogen-doped reduced graphene oxide (NrGO) in combination with NiO nanos...
Several technological routes are being investigated for improving the energy storage capability and ...
A versatile method based on the matrix assisted pulsed laser evaporation (MAPLE) technique was used ...
The authors acknowledge the financial support of the Spanish Ministry of Economy and Competitiveness...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
The key motivation of this study is to investigate the potential of graphene/metal oxides nanocompos...
Ever-growing energy needs, limited energy resources, and the need to decrease soaring greenhouse gas...
Three-dimensional graphenes are versatile materials for a range of electronic applications and consi...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Graphene nano-walls (GNWs) are promising materials that can be used as an electrode in electrochemic...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...
The full knowledge of the charge storage mechanisms occurring in complex composite electrodes is key...
Porous multicomponent surface layers consisting of bimetallic oxide nanoparticles, carbon nanomateri...
Electrodes constituted by nitrogen-doped reduced graphene oxide (NrGO) in combination with NiO nanos...
Several technological routes are being investigated for improving the energy storage capability and ...
A versatile method based on the matrix assisted pulsed laser evaporation (MAPLE) technique was used ...
The authors acknowledge the financial support of the Spanish Ministry of Economy and Competitiveness...
Graphene-based supercapacitors are powerful devices for supporting smart wearable electronics. Howev...
The key motivation of this study is to investigate the potential of graphene/metal oxides nanocompos...
Ever-growing energy needs, limited energy resources, and the need to decrease soaring greenhouse gas...
Three-dimensional graphenes are versatile materials for a range of electronic applications and consi...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
Graphene nano-walls (GNWs) are promising materials that can be used as an electrode in electrochemic...
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based mate...
Supercapacitors are irreplaceable energy-storage devices for high power output and rapid charge/disc...
Recent developments of low-power electronic devices have triggered interests towards small-scale ene...
The full knowledge of the charge storage mechanisms occurring in complex composite electrodes is key...