Single-crystalline and branched 1D arrays, ZnO nanowires/nanodisks (NWs/NDs) arrays, are fabricated to significantly enhance the performance of photoelectrochemical (PEC) water splitting. The epitaxial growth of the ZnO NDs with large exposed polar facets on ZnO NWs exhibits a laminated structure, which dramatically increases the light scattering capacity of the NWs arrays, especially in the wavelength region around 400 nm. The ND branching of the 1D arrays in the epitaxial fashion not only increase surface area and light utilization, but also support fast charge transport, leading to the considerable increase of photocurrent. Moreover, the tiny size NDs can facilitate charge separation and reduce charge recombination, while the large expos...
This investigation demonstrates an environmentally friendly inorganic light-harvesting nanostructure...
Improving the visible-light absorption is one of the key ways to optimize the photoelectrochemical p...
One-step, low-cost, and environmentally suitable method to grow large-scale arrays of densely packed...
We demonstrate selective growth of ZnO branched nanostructures: from nanorod clusters (with branches...
A facile and effective growing strategy of graphite-like carbon nitride quantum dots (CNQDs) modifie...
Si/ZnO core/shell nanowire (NW) arrays were fabricated using atomic layer deposition of ZnO shell on...
One-dimensional oxide nanostructure arrays are widely investigated as photoelectrodes in solar cells...
One-dimensional oxide nanostructure arrays are widely investigated as photoelectrodes in solar cells...
We report the fabrication of quantum dot-sensitized hierarchical structure and the application of th...
We report the systematic study of 3D ZnO/Si branched nanowire (b-NW) photoelectrodes and their appli...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
We report the fabrication of a three dimensional branched ZnO/Si heterojunction nanowire array by a ...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
The use of zinc oxide (ZnO) nanowires improves charge collection, and consequently power conversion ...
We report a method for synthesizing ZnO/ZnSe heterostructure nanowire arrays for use in photoelectro...
This investigation demonstrates an environmentally friendly inorganic light-harvesting nanostructure...
Improving the visible-light absorption is one of the key ways to optimize the photoelectrochemical p...
One-step, low-cost, and environmentally suitable method to grow large-scale arrays of densely packed...
We demonstrate selective growth of ZnO branched nanostructures: from nanorod clusters (with branches...
A facile and effective growing strategy of graphite-like carbon nitride quantum dots (CNQDs) modifie...
Si/ZnO core/shell nanowire (NW) arrays were fabricated using atomic layer deposition of ZnO shell on...
One-dimensional oxide nanostructure arrays are widely investigated as photoelectrodes in solar cells...
One-dimensional oxide nanostructure arrays are widely investigated as photoelectrodes in solar cells...
We report the fabrication of quantum dot-sensitized hierarchical structure and the application of th...
We report the systematic study of 3D ZnO/Si branched nanowire (b-NW) photoelectrodes and their appli...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
We report the fabrication of a three dimensional branched ZnO/Si heterojunction nanowire array by a ...
Hydrogen production from water splitting using solar energy based on photoelectrochemical (PEC) cell...
The use of zinc oxide (ZnO) nanowires improves charge collection, and consequently power conversion ...
We report a method for synthesizing ZnO/ZnSe heterostructure nanowire arrays for use in photoelectro...
This investigation demonstrates an environmentally friendly inorganic light-harvesting nanostructure...
Improving the visible-light absorption is one of the key ways to optimize the photoelectrochemical p...
One-step, low-cost, and environmentally suitable method to grow large-scale arrays of densely packed...