We report the fabrication of a three dimensional branched ZnO/Si heterojunction nanowire array by a two-step, wafer-scale, low-cost, solution etching/growth method and its use as photoelectrode in a photoelectrochemical cell for high efficiency solar powered water splitting. Specifically, we demonstrate that the branched nanowire heterojunction photoelectrode offers improved light absorption, increased photocurrent generation due to the effective charge separation in Si nanowire backbones and ZnO nanowire branching, and enhanced gas evolution kinetics because of the dramatically increased surface area and decreased radius of curvature. The branching nanowire heterostructures offer direct functional integration of different materials for hig...
Single-crystalline and branched 1D arrays, ZnO nanowires/nanodisks (NWs/NDs) arrays, are fabricated ...
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...
ABSTRACT: We report the fabrication of three-dimensional (3D) branched nanowire (NW) heterostructure...
We report the fabrication of three-dimensional (3D) branched nanowire (NW) heterostructures, consist...
We report the systematic study of 3D ZnO/Si branched nanowire (b-NW) photoelectrodes and their appli...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
We report a facile and large-scale fabrication of three-dimensional (3D) ZnO/CuO heterojunction bran...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
We report a method for synthesizing ZnO/ZnSe heterostructure nanowire arrays for use in photoelectro...
photoelectrochemical device with a novel hierarchical heterostructure coupled with narrow bandgap se...
Photolysis of water with semiconductor materials has been investigated intensely as a clean and rene...
Photolysis of water with semiconductor materials has been investigated intensely as a clean and rene...
The three-dimensional (3D) hierarchical nanostructure is one of the promising candidates for high pe...
Single-crystalline and branched 1D arrays, ZnO nanowires/nanodisks (NWs/NDs) arrays, are fabricated ...
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...
ABSTRACT: We report the fabrication of three-dimensional (3D) branched nanowire (NW) heterostructure...
We report the fabrication of three-dimensional (3D) branched nanowire (NW) heterostructures, consist...
We report the systematic study of 3D ZnO/Si branched nanowire (b-NW) photoelectrodes and their appli...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
We report a facile and large-scale fabrication of three-dimensional (3D) ZnO/CuO heterojunction bran...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
We report a method for synthesizing ZnO/ZnSe heterostructure nanowire arrays for use in photoelectro...
photoelectrochemical device with a novel hierarchical heterostructure coupled with narrow bandgap se...
Photolysis of water with semiconductor materials has been investigated intensely as a clean and rene...
Photolysis of water with semiconductor materials has been investigated intensely as a clean and rene...
The three-dimensional (3D) hierarchical nanostructure is one of the promising candidates for high pe...
Single-crystalline and branched 1D arrays, ZnO nanowires/nanodisks (NWs/NDs) arrays, are fabricated ...
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...