Production of sustainable and renewable hydrogen fuel has attracted more and more attentions recently. Amongst the production methods, sunlight-driven water splitting is known as the most popular way to obtain hydrogen from water. This field has gained a significant development rate with the emergence of lead halide perovskite sensitizer (CH3NH3PbI3) as a promising material for photovoltaics cells, which can drive the water splitting experiment. In this project, water splitting was successfully processed with the introduction of multi-junction perovskite solar cells system combined with an efficient catalyst. Specifically, the catalyst electrode deposited with a RuO2 layer exhibits a high catalytic activity toward the oxygen evolution react...
Efficient sunlight-driven water splitting devices can be achieved by pairing two absorbers of differ...
Realizing solar‐to‐hydrogen (STH) efficiencies close to 20% using low‐cost semiconductors remains a ...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Production of sustainable and renewable hydrogen fuel has attracted more and more attentions recentl...
Lead halide perovskite solar cells are notoriously moisture-sensitive, but recent encapsulation stra...
Although sunlight-driven water splitting is a promising route to sustainable hydrogen fuel productio...
Abstract Hydrogen is a promising future sustainable fuel candidate with boundless opportunities. Res...
Hydrogen is considered as the "holy grail" for the energy community. One of the most promising strat...
Photoelectrochemical water splitting half reactions on semiconducting photoelectrodes have received ...
The quest for economic, large-scale hydrogen production has motivated the search for new materials a...
The quest for economic, large-scale hydrogen production has motivated the search for new materials a...
Photoelectrochemical (PEC) water splitting is an attractive strategy for the large-scale production ...
Metal halide perovskite solar cells have an appropriate bandgap (1.5–1.6 eV), and thus output voltag...
Metal-halide perovskites have been widely investigated in the photovoltaic sector due to their promi...
Metal halide perovskite solar cells have an appropriate bandgap (1.5–1.6 eV), and thus output voltag...
Efficient sunlight-driven water splitting devices can be achieved by pairing two absorbers of differ...
Realizing solar‐to‐hydrogen (STH) efficiencies close to 20% using low‐cost semiconductors remains a ...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...
Production of sustainable and renewable hydrogen fuel has attracted more and more attentions recentl...
Lead halide perovskite solar cells are notoriously moisture-sensitive, but recent encapsulation stra...
Although sunlight-driven water splitting is a promising route to sustainable hydrogen fuel productio...
Abstract Hydrogen is a promising future sustainable fuel candidate with boundless opportunities. Res...
Hydrogen is considered as the "holy grail" for the energy community. One of the most promising strat...
Photoelectrochemical water splitting half reactions on semiconducting photoelectrodes have received ...
The quest for economic, large-scale hydrogen production has motivated the search for new materials a...
The quest for economic, large-scale hydrogen production has motivated the search for new materials a...
Photoelectrochemical (PEC) water splitting is an attractive strategy for the large-scale production ...
Metal halide perovskite solar cells have an appropriate bandgap (1.5–1.6 eV), and thus output voltag...
Metal-halide perovskites have been widely investigated in the photovoltaic sector due to their promi...
Metal halide perovskite solar cells have an appropriate bandgap (1.5–1.6 eV), and thus output voltag...
Efficient sunlight-driven water splitting devices can be achieved by pairing two absorbers of differ...
Realizing solar‐to‐hydrogen (STH) efficiencies close to 20% using low‐cost semiconductors remains a ...
Solar water splitting directly converts solar energy into H2 fuel that is suitable for storage and t...