The development of high-capacity, stable cycling, and high mass loading cathode materials for asymmetric supercapacitors has been the subject of intense exploration. In this work, a well-aligned zinc-nickel-cobalt ternary (oxy)hydroxide (Zn-Ni-Co TOH) nanostructure with a controlled morphology is used, for the first time, as a high-performance cathode material for supercapacitors. Our findings demonstrate that precursor Zn-Ni-Co TOH materials can deliver superior capacity and rate capability to the Zn-Ni-Co oxide. A high mass loading of 7 mg cm on a carbon cloth substrate is achieved, accompanied by substantially improved facile ionic and electronic transport due to the highly open well-defined nanoarray architecture. The growth mechanism o...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Zinc cobalt sulfide (ZCS) is a promising and high performance electrode material for pseudocapacitor...
ABSTRACT: A series of flexible nanocomposite electrodes were fabricated by facile electro-deposition...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Nickel foam supported hierarchical mesoporous Zn–Ni–Co ternary oxide (ZNCO) nanowire arrays are synt...
Increased efforts have recently been devoted to developing high-energy-density flexible supercapacit...
Construction of electrochemically stable positive materials is still a key challenge to accomplish h...
Mesoporous cobalt-nickel-zinc ternary oxide (CNZO) nanosheets grown on the nickel foam are prepared ...
The development of high volumetric or areal capacitance energy storage devices is critical for the f...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Zinc cobalt sulfide (ZCS) is a promising and high performance electrode material for pseudocapacitor...
ABSTRACT: A series of flexible nanocomposite electrodes were fabricated by facile electro-deposition...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Conducting nanowires are of particular interest in energy-related research on devices such as superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Transition metal-based layered double hydroxides (LDH) are attractive electrode materials for superc...
Nickel foam supported hierarchical mesoporous Zn–Ni–Co ternary oxide (ZNCO) nanowire arrays are synt...
Increased efforts have recently been devoted to developing high-energy-density flexible supercapacit...
Construction of electrochemically stable positive materials is still a key challenge to accomplish h...
Mesoporous cobalt-nickel-zinc ternary oxide (CNZO) nanosheets grown on the nickel foam are prepared ...
The development of high volumetric or areal capacitance energy storage devices is critical for the f...
Supercapacitors are an important energy storage systems due to their high power compared to batterie...
It is a great challenge to achieve both high specific capacity and high energy density of supercapac...
A new method based on one-step solvothermal reaction is demonstrated to synthesize ultrathin Ni–Co l...
Zinc cobalt sulfide (ZCS) is a promising and high performance electrode material for pseudocapacitor...
ABSTRACT: A series of flexible nanocomposite electrodes were fabricated by facile electro-deposition...