Crystalline silicon (c-Si) solar cells have been dominating the photovoltaic (PV) market for decades, and c-Si based photoelectrochemical (PEC) cells are regarded as one of the most promising routes for water splitting and renewable production of hydrogen. In this work, we demonstrate a nanoscale tantalum oxide (TaOx, ∼6 nm) as an electron-selective heterocontact, simultaneously providing high-quality passivation to the silicon surface and effective transport of electrons to either an external circuit or a water-splitting catalyst. The PV application of TaOx is demonstrated by a proof-of-concept device having a conversion efficiency of 19.1%. In addition, the PEC application is demonstrated by a photon-to-current efficiency (with additional...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Metal oxide/Si heterostructures make up an exciting design route to high-performance electrodes for ...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Crystalline silicon (c-Si) solar cells have been dominating the photovoltaic (PV) market for decades...
Crystalline silicon (c-Si) solar cells have been dominating the photovoltaic (PV) market for decades...
Heterojunction solar cells with transition-metal-oxide-based carrier-selective contacts have been ga...
Heterojunction solar cells with transition-metal–oxide-based carrier-selective contacts have been ga...
Metal oxide/Si heterostructures make up an exciting design route to high‐performance electrodes for ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
Efficient unassisted solar water splitting, a pathway to storable renewable energy in the form of ch...
Photoelectrodes without a p–n junction are often limited in efficiency by charge recombination at se...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
For the last century, mankind has been hugely dependent on fossil fuels to meet its energy needs. Ha...
Metal oxide/Si heterostructures make up an exciting design route to high-performance electrodes for ...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Metal oxide/Si heterostructures make up an exciting design route to high-performance electrodes for ...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Crystalline silicon (c-Si) solar cells have been dominating the photovoltaic (PV) market for decades...
Crystalline silicon (c-Si) solar cells have been dominating the photovoltaic (PV) market for decades...
Heterojunction solar cells with transition-metal-oxide-based carrier-selective contacts have been ga...
Heterojunction solar cells with transition-metal–oxide-based carrier-selective contacts have been ga...
Metal oxide/Si heterostructures make up an exciting design route to high‐performance electrodes for ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
Efficient unassisted solar water splitting, a pathway to storable renewable energy in the form of ch...
Photoelectrodes without a p–n junction are often limited in efficiency by charge recombination at se...
Photoelectrochemical water splitting represents a promising method for providing clean, renewable en...
For the last century, mankind has been hugely dependent on fossil fuels to meet its energy needs. Ha...
Metal oxide/Si heterostructures make up an exciting design route to high-performance electrodes for ...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...
Metal oxide/Si heterostructures make up an exciting design route to high-performance electrodes for ...
The concept of hybrid tandem device structures that combine metal oxides with thin-film semiconducti...