Nickel–cobalt oxides/hydroxides have been considered as promising electrode materials for a high-performance supercapacitor. However, their energy density and cycle stability are still very poor at high current density. Moreover, there are few reports on the fabrication of mixed transition-metal oxides with multishelled hollow structures. Here, we demonstrate a new and flexible strategy for the preparation of hollow Ni–Co–O microspheres with optimized Ni/Co ratios, controlled shell porosity, shell numbers, and shell thickness. Owing to its high effective electrode area and electron transfer number (<i>n</i><sup>3/2</sup> <i>A</i>), mesoporous shells, and fast electron/ion transfer, the triple-shelled Ni–Co<sub>1.5</sub>–O electrode exhibits...
Mixed metal oxide nanomaterials have been demonstrated to be promising positive electrodes for energ...
By changing the mixed metal sulfide composition, morphology tuning of an active electrode material c...
A straightforward way to attain the theoretical capacitance and high rate capability of nickel hydro...
Metal–organic frameworks have shown promising applications as electrode materials for supercapacitor...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
Three-dimensionally hierarchical oxide/hydroxide materials have recently attracted increasing intere...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
Nickel–cobalt oxides were prepared by coprecipitation of their hydroxides precursors and a following...
A novel three-dimensional (3D) metal/metal oxide core/branch array electrode has been fabricated as ...
Nickel oxide microspheres with porous multi-shelled structure were synthesized via a sequential temp...
The most significant advantage of double layer supercapacitors over batteries is their ability of be...
A simple, additive-free, cost-effective and scalable successive ionic layer adsorption and reaction ...
The design and development of nanomaterial has become central to the advancement of pseudocapacitive...
The development of high-capacity, stable cycling, and high mass loading cathode materials for asymme...
Mixed metal oxide nanomaterials have been demonstrated to be promising positive electrodes for energ...
By changing the mixed metal sulfide composition, morphology tuning of an active electrode material c...
A straightforward way to attain the theoretical capacitance and high rate capability of nickel hydro...
Metal–organic frameworks have shown promising applications as electrode materials for supercapacitor...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
Three-dimensionally hierarchical oxide/hydroxide materials have recently attracted increasing intere...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
Nickel–cobalt oxides were prepared by coprecipitation of their hydroxides precursors and a following...
A novel three-dimensional (3D) metal/metal oxide core/branch array electrode has been fabricated as ...
Nickel oxide microspheres with porous multi-shelled structure were synthesized via a sequential temp...
The most significant advantage of double layer supercapacitors over batteries is their ability of be...
A simple, additive-free, cost-effective and scalable successive ionic layer adsorption and reaction ...
The design and development of nanomaterial has become central to the advancement of pseudocapacitive...
The development of high-capacity, stable cycling, and high mass loading cathode materials for asymme...
Mixed metal oxide nanomaterials have been demonstrated to be promising positive electrodes for energ...
By changing the mixed metal sulfide composition, morphology tuning of an active electrode material c...
A straightforward way to attain the theoretical capacitance and high rate capability of nickel hydro...