Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in the past several decades, the lack of efficient, stable and Earth-abundant photoelectrodes remains a bottleneck for practical application. Here, we report a photocathode with a coaxial nanowire structure implementing a Cu2O/Ga2O3-buried p-n junction that achieves efficient light harvesting across the whole visible region to over 600 nm, reaching an external quantum yield for hydrogen generation close to 80%. With a photocurrent onset over +1V against the reversible hydrogen electrode and a photocurrent density of -10 mA cm(-2) at 0 V versus the reversible hydrogen electrode, our electrode constitutes the best oxide photocathode for catalytic g...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Cupric oxide (CuO) is considered as a promising photocathode material for photo(electro)chemical wat...
Cu2O is a narrow band gap material serving as an important candidate for photoelectrochemical hydrog...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
To handle global problems of energy and environmental pollution, efforts have been made to harvest e...
Due to its abundance, scalability, and nontoxicity, Cu<sub>2</sub>O has attracted extensive attentio...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Large research efforts have been devoted to optimizing the output of earth-abundant photoabsorbers i...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Cu2O is one of the most promising light absorbing materials for solar energy conversion. Previous st...
Cu2O is one of the most promising light absorbing materials for solar energy conversion. Previous st...
Photoelectrochemical water splitting represents an attractive method of capturing and storing the im...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Cupric oxide (CuO) is considered as a promising photocathode material for photo(electro)chemical wat...
Cu2O is a narrow band gap material serving as an important candidate for photoelectrochemical hydrog...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
To handle global problems of energy and environmental pollution, efforts have been made to harvest e...
Due to its abundance, scalability, and nontoxicity, Cu<sub>2</sub>O has attracted extensive attentio...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Given the intermittent nature of solar radiation, the large-scale use of solar energy requires an ef...
Large research efforts have been devoted to optimizing the output of earth-abundant photoabsorbers i...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Cu2O is one of the most promising light absorbing materials for solar energy conversion. Previous st...
Cu2O is one of the most promising light absorbing materials for solar energy conversion. Previous st...
Photoelectrochemical water splitting represents an attractive method of capturing and storing the im...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
Cupric oxide (CuO) is considered as a promising photocathode material for photo(electro)chemical wat...
Cu2O is a narrow band gap material serving as an important candidate for photoelectrochemical hydrog...