Solar-assisted water splitting using photoelectrochemical cells (PECs) is one of the promising pathways for the production of hydrogen for renewable energy storage. The nature of the semiconductor material is the primary factor that controls the overall energy conversion efficiency. Finding semiconductor materials with appropriate semiconducting properties (stability, efficient charge separation and transport, abundant, visible light absorption) is still a challenge for developing materials for solar water splitting. Owing to the suitable bandgap for visible light harvesting and the abundance of iron-based oxide semiconductors, they are promising candidates for PECs and have received much research attention. Spinel ferrites are subclasses o...
Spinel ferrite materials have an electronic band structure that is well suited for visible light-ind...
In solar water splitting, the abundant and sustainable solar radiation is directly utilized to split...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
Solar water splitting in a photoelectrochemical cell is a highly promising technology to produce cle...
The utilization of solar light for the photoelectrochemical and photocatalytic production of molecul...
The need to satisfy the growing global population's enormous energy demands is a major challenge for...
The novel material class of high entropy oxides with their unique and unexpected physicochemical pro...
International audienceThe search for ideal semiconductors for photoelectrochemical solar fuel conver...
School of Energy and Chemical Engineering (Chemical Engineering)Solar water splitting in a photoelec...
The increasing demand for clean renewable energy needed for sustainable industrial progress and popu...
The last few decades??? extensive research on the photoelectrochemical (PEC) water splitting has pro...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
The photoelectrochemical properties of the ferrites ZnFe2O4, MgFe2O4 and Li0.5O4 with the spinel str...
Over the past few decades, owing to their unique functional properties such as physical, chemical, o...
Solar assisted water splitting in a PEC is an attractive concept to store solar energy as hydrogen f...
Spinel ferrite materials have an electronic band structure that is well suited for visible light-ind...
In solar water splitting, the abundant and sustainable solar radiation is directly utilized to split...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...
Solar water splitting in a photoelectrochemical cell is a highly promising technology to produce cle...
The utilization of solar light for the photoelectrochemical and photocatalytic production of molecul...
The need to satisfy the growing global population's enormous energy demands is a major challenge for...
The novel material class of high entropy oxides with their unique and unexpected physicochemical pro...
International audienceThe search for ideal semiconductors for photoelectrochemical solar fuel conver...
School of Energy and Chemical Engineering (Chemical Engineering)Solar water splitting in a photoelec...
The increasing demand for clean renewable energy needed for sustainable industrial progress and popu...
The last few decades??? extensive research on the photoelectrochemical (PEC) water splitting has pro...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
The photoelectrochemical properties of the ferrites ZnFe2O4, MgFe2O4 and Li0.5O4 with the spinel str...
Over the past few decades, owing to their unique functional properties such as physical, chemical, o...
Solar assisted water splitting in a PEC is an attractive concept to store solar energy as hydrogen f...
Spinel ferrite materials have an electronic band structure that is well suited for visible light-ind...
In solar water splitting, the abundant and sustainable solar radiation is directly utilized to split...
State-of-the-art water-oxidation catalysts (WOCs) in acidic electrolytes usually contain expensive n...