Sustainable and efficient conversion of solar energy to transportable green energy and storable fuels, hydrogen, represents a solution to the energy crisis and reduces the consumption of fossil fuels, which are mainly responsible for the rise in global temperature. Solar water splitting using semiconductors, such as silicon, is promising to satisfy the global energy demand by producing hydrogen molecules. However, the solar to hydrogen conversion efficiency of a silicon photoelectrode is suppressed by overpotential, high reflectance and/or instability in liquid electrolytes. Herein, we report the synthesis of multifunctional solution-processed TiO2 nanorods on a 4-inch p-silicon wafer with controllable heights and diameters for highly effic...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
There are currently great needs to develop low-cost inorganic materials that can efficiently perform...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
For the last century, mankind has been hugely dependent on fossil fuels to meet its energy needs. Ha...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
Photoelectrochemical (PEC) water splitting is an elegant method to generate renewable hydrogen fuel ...
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...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
The excessive consumption of non-renewable energy sources such as fossil fuels has lead the world to...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
Hydrogen production through direct sunlight-driven water splitting in photo-electrochemical cells (P...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
There are currently great needs to develop low-cost inorganic materials that can efficiently perform...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
For the last century, mankind has been hugely dependent on fossil fuels to meet its energy needs. Ha...
The semiconducting materials used for photoelectrochemical (PEC) water splitting must withstand the ...
Photoelectrochemical (PEC) water splitting is an elegant method to generate renewable hydrogen fuel ...
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...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
The excessive consumption of non-renewable energy sources such as fossil fuels has lead the world to...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
Hydrogen production through direct sunlight-driven water splitting in photo-electrochemical cells (P...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
Solar fuels such as H2 generated from sunlight and seawater using earth-abundant materials are expec...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
There are currently great needs to develop low-cost inorganic materials that can efficiently perform...