Photocathodes based on cuprous oxide (Cu2O) are promising materials for large scale and widespread solar fuel generation due to the abundance of copper, suitable bandgap, and favorable band alignments for reducing water and carbon dioxide. A protective overlayer is required to stabilize the Cu2O in aqueous media under illumination, and the interface between this overlayer and the catalyst nanoparticles was previously identified as a key source of instability. Here, the properties of the protective titanium dioxide overlayer ofcomposite cuprous oxide photocathodes are further investigated, as well as an oxide-based hydrogen evolution catalyst, ruthenium oxide (RuO2). The RuO2-catalyzed photoelectrodes exhibit much improved stability versus p...
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...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
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...
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...
The amount of solar power striking the earth’s surface is vastly superior to humanity’s present day ...
Multi-electron heterogeneous catalysis is a pivotal element in the (photo)electrochemical generation...
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...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
AbstractOverall decomposition of water into hydrogen and oxygen in presence of a heterogeneous photo...
Cupric oxide (CuO) is considered as a promising photocathode material for photo(electro)chemical wat...
The origin of instability of p-Cu2O films deposited on a platinized Si substrate when used as photoc...
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...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...
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...
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...
The amount of solar power striking the earth’s surface is vastly superior to humanity’s present day ...
Multi-electron heterogeneous catalysis is a pivotal element in the (photo)electrochemical generation...
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...
Light-driven water splitting is one of the most promising approaches for using solar energy in light...
AbstractOverall decomposition of water into hydrogen and oxygen in presence of a heterogeneous photo...
Cupric oxide (CuO) is considered as a promising photocathode material for photo(electro)chemical wat...
The origin of instability of p-Cu2O films deposited on a platinized Si substrate when used as photoc...
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...
Although large research efforts have been devoted to photoelectrochemical (PEC) water splitting in t...