An ultrathin nickel hydroxide layer electrodeposited on a carbon-coated three-dimensional porous copper structure (3D-C/Cu) is suggested as an additive and binder-free conductive electrode with short electron path distances, large electrochemical active sites, and improved structural stability, for high performance supercapacitors. The 3D-porous copper structure (3D-Cu) provides high electrical conductivity and facilitates electron transport between the Ni(OH)(2) active materials and the current collector of the Ni-plate. A carbon coating was applied to the 3D-Cu to prevent the oxidation of Cu, without degrading the electron transport behavior of the 3D-Cu. The 3D-Ni(OH)(2)/C/Cu exhibited a high specific capacitance of 1860 F g(-1) at 1 A...
Large-area Co(OH)<sub>2</sub>-based supercapacitor electrodes composed of nanotube arrays grown on ...
Porous microspheres copper cobalt carbonate hydroxides (CuxCo2-xCH) pseudocapacitive electrode mater...
A simple, additive-free, cost-effective and scalable successive ionic layer adsorption and reaction ...
A straightforward way to attain the theoretical capacitance and high rate capability of nickel hydro...
Nanoporous nickel hydroxide (Ni(OH)(2)) thin film was grown on the surface of ultrathin-graphite foa...
Nanoporous nickel hydroxide (Ni(OH)<sub>2</sub>) thin film was grown on the surface of ultrathin-gra...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
A three-dimensional (3D) conductive network as the current collector is critical to enabling high-pe...
A three-dimensional nanoporous Ni(OH)<sub>2</sub> thin-film was hydrothermally converted from an ano...
The development of high volumetric or areal capacitance energy storage devices is critical for the f...
Various metal hydroxides/oxides grown on conductive substrates such as nickel foam have been reporte...
A complex hydroxide/metal Ni(OH)2@Ni core–shell electrode was developed for a high-performance and f...
A complex hydroxide/metal Ni(OH)(2)@Ni core-shell electrode was developed for a high-performance and...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
The demand for portable electronic devices is driving the development of flexible supercapacitor, wh...
Large-area Co(OH)<sub>2</sub>-based supercapacitor electrodes composed of nanotube arrays grown on ...
Porous microspheres copper cobalt carbonate hydroxides (CuxCo2-xCH) pseudocapacitive electrode mater...
A simple, additive-free, cost-effective and scalable successive ionic layer adsorption and reaction ...
A straightforward way to attain the theoretical capacitance and high rate capability of nickel hydro...
Nanoporous nickel hydroxide (Ni(OH)(2)) thin film was grown on the surface of ultrathin-graphite foa...
Nanoporous nickel hydroxide (Ni(OH)<sub>2</sub>) thin film was grown on the surface of ultrathin-gra...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
A three-dimensional (3D) conductive network as the current collector is critical to enabling high-pe...
A three-dimensional nanoporous Ni(OH)<sub>2</sub> thin-film was hydrothermally converted from an ano...
The development of high volumetric or areal capacitance energy storage devices is critical for the f...
Various metal hydroxides/oxides grown on conductive substrates such as nickel foam have been reporte...
A complex hydroxide/metal Ni(OH)2@Ni core–shell electrode was developed for a high-performance and f...
A complex hydroxide/metal Ni(OH)(2)@Ni core-shell electrode was developed for a high-performance and...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
The demand for portable electronic devices is driving the development of flexible supercapacitor, wh...
Large-area Co(OH)<sub>2</sub>-based supercapacitor electrodes composed of nanotube arrays grown on ...
Porous microspheres copper cobalt carbonate hydroxides (CuxCo2-xCH) pseudocapacitive electrode mater...
A simple, additive-free, cost-effective and scalable successive ionic layer adsorption and reaction ...