Abstract Carbon nanotube/metal oxide based hybrids are envisioned as high performance electrochemical energy storage electrodes since these systems can provide improved performances utilizing an electric double layer coupled with fast faradaic pseudocapacitive charge storage mechanisms. In this work, we show that high performance supercapacitor electrodes with a specific capacitance of ∼192 F/g along with a maximum energy density of ∼3.8 W h/kg and a power density of ∼28 kW/kg can be achieved by synthesizing zinc oxide nanowires (ZnO NWs) directly on top of aligned multi-walled carbon nanotubes (MWCNTs). In comparison to pristine MWCNTs, these constitute a 12-fold of increase in specific capacitance as well as corresponding power and energy...
Nickel foam supported hierarchical mesoporous Zn–Ni–Co ternary oxide (ZNCO) nanowire arrays are synt...
On-chip energy storage and management will have transformative impacts in developing advanced electr...
Increased efforts have recently been devoted to developing high-energy-density flexible supercapacit...
In the domain of energy storage, electrochemical capacitors have numerous applications ranging from ...
An efficient and simple hydrothermal method has been developed to prepare Carbon nanotube/Graphite n...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
Supercapacitor (SC) is an energy storage technology that bridges the gap between conventional capaci...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Abstract On-chip energy storage and management will have transformative impacts in developing advan...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
We report a facile method to design Co3O4-MnO2-NiO ternary hybrid 1D nanotube arrays for their appli...
We report a facile method to design Co3O4-MnO2-NiO ternary hybrid 1D nanotube arrays for their appli...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Nickel foam supported hierarchical mesoporous Zn–Ni–Co ternary oxide (ZNCO) nanowire arrays are synt...
On-chip energy storage and management will have transformative impacts in developing advanced electr...
Increased efforts have recently been devoted to developing high-energy-density flexible supercapacit...
In the domain of energy storage, electrochemical capacitors have numerous applications ranging from ...
An efficient and simple hydrothermal method has been developed to prepare Carbon nanotube/Graphite n...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
Supercapacitor (SC) is an energy storage technology that bridges the gap between conventional capaci...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Abstract On-chip energy storage and management will have transformative impacts in developing advan...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
We report a facile method to design Co3O4-MnO2-NiO ternary hybrid 1D nanotube arrays for their appli...
We report a facile method to design Co3O4-MnO2-NiO ternary hybrid 1D nanotube arrays for their appli...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Electrode materials are the most important factors to verify the properties of the electrochemical s...
Nickel foam supported hierarchical mesoporous Zn–Ni–Co ternary oxide (ZNCO) nanowire arrays are synt...
On-chip energy storage and management will have transformative impacts in developing advanced electr...
Increased efforts have recently been devoted to developing high-energy-density flexible supercapacit...