Silicon (Si) is an attractive candidate for photoelectrochemical (PEC) water splitting because of its small band gap, fast carrier mobility and abundant reserves. However, the PEC performance has been severely limited by the sluggish kinetics of oxygen/hydrogen evolution reaction at the Si photoelectrode/electrolyte interface and poor stability in the aqueous environment. Herein, the bifunctional CuCo hybrid oxides (CuCo-HO) cocatalysts have been integrated with ultrathin TiO2 decorated n-type and p-type Si nanowires (NWs) to simultaneously improve the photoactivity and stability of Si photoelectrodes. The thickness of TiO2 layer, the concentration of CuCo-precursor and the hydrothermal reaction time have been investigated to optimize the P...
The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied ext...
ZnO thin films in nanorod (NR) and nanoflower (NF) morphologies were used as photoelectrode scaffold...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
One main difficulty for the technological development of photoelectrochemical (PEC) water splitting...
One main difficulty for the technological development of photoelectrochemical (PEC) water splitting ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
Considering its small band gap and appropriate conduction band level, Si is a suitable semiconductor...
There are currently great needs to develop low-cost inorganic materials that can efficiently perform...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
Metal oxide/Si heterostructures make up an exciting design route to high‐performance electrodes for ...
Photoelectrochemical (PEC) water splitting is an elegant method to generate renewable hydrogen fuel ...
Photoelectrochemical (PEC) water splitting makes it possible to harvest solar energy and then conver...
Intrinsic drawbacks of Si, a well adapted material in photovoltaics, including the high valence band...
\u3cp\u3eMetal oxide/Si heterostructures make up an exciting design route to high-performance electr...
The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied ext...
ZnO thin films in nanorod (NR) and nanoflower (NF) morphologies were used as photoelectrode scaffold...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...
One main difficulty for the technological development of photoelectrochemical (PEC) water splitting...
One main difficulty for the technological development of photoelectrochemical (PEC) water splitting ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
Considering its small band gap and appropriate conduction band level, Si is a suitable semiconductor...
There are currently great needs to develop low-cost inorganic materials that can efficiently perform...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
The cost-effective, robust, and efficient electrocatalysts for photoelectrochemical (PEC) water-spli...
Metal oxide/Si heterostructures make up an exciting design route to high‐performance electrodes for ...
Photoelectrochemical (PEC) water splitting is an elegant method to generate renewable hydrogen fuel ...
Photoelectrochemical (PEC) water splitting makes it possible to harvest solar energy and then conver...
Intrinsic drawbacks of Si, a well adapted material in photovoltaics, including the high valence band...
\u3cp\u3eMetal oxide/Si heterostructures make up an exciting design route to high-performance electr...
The use of semiconductors as photoelectrochemical electrodes and photocatalysts has been studied ext...
ZnO thin films in nanorod (NR) and nanoflower (NF) morphologies were used as photoelectrode scaffold...
Cuprous oxide Cu2O is a promising photocathode material for photoelectrochemical PEC water split...