Nickel-cobalt binary hydroxide nanotubes were fabricated by a facile synthetic approach by using Cu2O nanowires as sacrificial templates. The surface morphology of the binary hydroxide nanotubes can be easily controlled by adjusting the molar ratio of Ni to Co. With increasing Co content, the surfaces of the nanotubes tend to form hierarchical nanoflakes. The obtained nanotubes with high specific surface area exhibit typical battery‐like electrochemical behavior. Among them, Ni-Co hydroxide nanotubes with Ni:Co=48:52 showed outstanding electrochemical characteristics, with a specific capacity of 209.9 mAh g−1 at 1 Ag−1 and remarkable cycling stability with 84.4 % capacity retention after 10 000 cycles at 20 A g−1. With the advantages of the...
So far, numerous metal oxides and metal hydroxides have been reported as an electrode material, a cr...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...
Nickel–cobalt layered double hydroxides (Ni–Co-LDH) have recently been examined for their potential ...
Nickel-cobalt binary hydroxide nanotubes were fabricated by a facile synthetic approach by using Cu2...
Nickel-cobalt binary hydroxide nanotubes were fabricated by a facile synthetic approach by using Cu2...
Herein, we demonstrate the high-density assembly of Ni-Co hydroxide nanoflakes on conductive carbon ...
A novel hierarchical nanotube array (NTA) with a massive layered top and discretely separated nanotu...
Nickel-cobalt layered double hydroxides (Ni-Co-LDH) have recently been examined for their potential ...
Battery-type electrodes consisting of hierarchically constructed nickel cobalt sulfide (denoted as N...
Battery-type electrodes consisting of hierarchically constructed nickel cobalt sulfide (denoted as N...
One of the key factors to improve electrochemical properties is to find exceptional electrode materi...
In this study, to fabricate a non-binder electrode, we grew nickel-cobalt sulfide (NCS) nanotubes (N...
A new hybrid nanostructure of porous cobalt monoxide nanowire @ ultrathin nickel hydr...
A new hybrid nanostructure of porous cobalt monoxide nanowire @ ultrathin nickel hydr...
Nickel–cobalt oxides were prepared by coprecipitation of their hydroxides precursors and a following...
So far, numerous metal oxides and metal hydroxides have been reported as an electrode material, a cr...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...
Nickel–cobalt layered double hydroxides (Ni–Co-LDH) have recently been examined for their potential ...
Nickel-cobalt binary hydroxide nanotubes were fabricated by a facile synthetic approach by using Cu2...
Nickel-cobalt binary hydroxide nanotubes were fabricated by a facile synthetic approach by using Cu2...
Herein, we demonstrate the high-density assembly of Ni-Co hydroxide nanoflakes on conductive carbon ...
A novel hierarchical nanotube array (NTA) with a massive layered top and discretely separated nanotu...
Nickel-cobalt layered double hydroxides (Ni-Co-LDH) have recently been examined for their potential ...
Battery-type electrodes consisting of hierarchically constructed nickel cobalt sulfide (denoted as N...
Battery-type electrodes consisting of hierarchically constructed nickel cobalt sulfide (denoted as N...
One of the key factors to improve electrochemical properties is to find exceptional electrode materi...
In this study, to fabricate a non-binder electrode, we grew nickel-cobalt sulfide (NCS) nanotubes (N...
A new hybrid nanostructure of porous cobalt monoxide nanowire @ ultrathin nickel hydr...
A new hybrid nanostructure of porous cobalt monoxide nanowire @ ultrathin nickel hydr...
Nickel–cobalt oxides were prepared by coprecipitation of their hydroxides precursors and a following...
So far, numerous metal oxides and metal hydroxides have been reported as an electrode material, a cr...
© 2015 Elsevier Ltd. All rights reserved. We developed a simple strategy to prepare a multiwall carb...
Nickel–cobalt layered double hydroxides (Ni–Co-LDH) have recently been examined for their potential ...