Given the limitations of the materials available for photoelectrochemical water splitting, a multiphoton (tandem) approach is required to convert solar energy into hydrogen efficiently and durably. Here we investigate a promising system consisting of a hematite photoanode in combination with dye-sensitized solar cells with newly developed organic dyes, such as the squaraine dye, which permit new configurations of this tandem system. Three configurations were investigated: two side-by-side dye cells behind a semitransparent hematite photoanode, two semitransparent dye sensitized solar cells (DSCs) in front of the hematite, and a trilevel hematite/DSC/DSC architecture. Based on the current-voltage curves of state-of-the-art devices made in ou...
A hematite photoanode showing a stable, record-breaking performance of 4.32 mA/cm(2) photoelectroche...
Photoelectrochemical (PEC) cells are attractive for storing solar energy in chemical bonds through c...
Photoelectrochemical water splitting half reactions on semiconducting photoelectrodes have received ...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
The development of an efficient conversion system to transform solar energy into chemical energy, su...
The concept of hybrid tandem device structures that combine metal oxides with thin‐film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Tandem photoelectrochemical cells, formed by two photoelectrodes with complementary light absorption...
Metal oxide semiconductors are promising photoelectrode materials for solar water splitting due to t...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
Hematite has a great potential as a photoanode for photoelectrochemical (PEC) water splitting by con...
Since the beginning of the Industrial Revolution, the global energy consumption has been continuousl...
Efficient unassisted solar water splitting, a pathway to storable renewable energy in the form of ch...
Artificial photosynthesis provides a way to store solar energy in chemical bonds. Achieving water sp...
A hematite photoanode showing a stable, record-breaking performance of 4.32 mA/cm(2) photoelectroche...
Photoelectrochemical (PEC) cells are attractive for storing solar energy in chemical bonds through c...
Photoelectrochemical water splitting half reactions on semiconducting photoelectrodes have received ...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
The development of an efficient conversion system to transform solar energy into chemical energy, su...
The concept of hybrid tandem device structures that combine metal oxides with thin‐film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Tandem photoelectrochemical cells, formed by two photoelectrodes with complementary light absorption...
Metal oxide semiconductors are promising photoelectrode materials for solar water splitting due to t...
Photoelectrochemical cells employing organic semiconductors (OS) are promising for solar-to-fuel con...
Hematite has a great potential as a photoanode for photoelectrochemical (PEC) water splitting by con...
Since the beginning of the Industrial Revolution, the global energy consumption has been continuousl...
Efficient unassisted solar water splitting, a pathway to storable renewable energy in the form of ch...
Artificial photosynthesis provides a way to store solar energy in chemical bonds. Achieving water sp...
A hematite photoanode showing a stable, record-breaking performance of 4.32 mA/cm(2) photoelectroche...
Photoelectrochemical (PEC) cells are attractive for storing solar energy in chemical bonds through c...
Photoelectrochemical water splitting half reactions on semiconducting photoelectrodes have received ...