A major challenge for achieving energy transition and transforming the current energy model into distributed production is the development of efficient artificial leaf-type devices capable of directly converting carbon dioxide (CO2), water and sunlight into sustainable fuels and chemicals under ambient conditions. These devices should avoid using critical raw materials to be sustainable and cost-competitive. We report top-level results for the first time in converting CO2 and H2O to fuels (formate and H-2) using sunlight and electrodes based solely on earth-abundant materials. The cell provides a solar-to-fuel efficiency of >10% combined with world-record current densities to comparable devices operating at room temperature, without adding ...
Molecular hydrogen can be generated renewably by water splitting with an artificial-leaf device, whi...
Hydrogen, if produced from clean and abundant sources, has the potential for solving the concerns on...
Semi-artificial photoelectrochemistry can combine state-of-the-art photovoltaic light-absorbers with...
A major challenge for achieving the energy transition and transforming the current energy model into...
A major challenge for achieving the energy transition and transforming the current energy model into...
A major challenge for achieving the energy transition and transforming the current energy model into...
The development of energy converting devices, which are able to light induced split water into hydro...
The development of energy converting devices, which are able to light induced split water into hydro...
The prospect of a device that uses solar energy to split water into H2 and O2 is highly attractive i...
Demand for energy is projected to increase at least twofold by mid-century relative to the present g...
Solar technologies hold the potential to ultimately counteract the effects of climate change. Nevert...
Solar water splitting is a promising approach to transform sunlight into renewable, sustainable and ...
The development of energy converting devices, which are able to light induced split water into hydro...
Solar water splitting is a promising approach to transform sunlight into renewable, sustainable and ...
Molecular hydrogen can be generated renewably by water splitting with an artificial-leaf device, whi...
Molecular hydrogen can be generated renewably by water splitting with an artificial-leaf device, whi...
Hydrogen, if produced from clean and abundant sources, has the potential for solving the concerns on...
Semi-artificial photoelectrochemistry can combine state-of-the-art photovoltaic light-absorbers with...
A major challenge for achieving the energy transition and transforming the current energy model into...
A major challenge for achieving the energy transition and transforming the current energy model into...
A major challenge for achieving the energy transition and transforming the current energy model into...
The development of energy converting devices, which are able to light induced split water into hydro...
The development of energy converting devices, which are able to light induced split water into hydro...
The prospect of a device that uses solar energy to split water into H2 and O2 is highly attractive i...
Demand for energy is projected to increase at least twofold by mid-century relative to the present g...
Solar technologies hold the potential to ultimately counteract the effects of climate change. Nevert...
Solar water splitting is a promising approach to transform sunlight into renewable, sustainable and ...
The development of energy converting devices, which are able to light induced split water into hydro...
Solar water splitting is a promising approach to transform sunlight into renewable, sustainable and ...
Molecular hydrogen can be generated renewably by water splitting with an artificial-leaf device, whi...
Molecular hydrogen can be generated renewably by water splitting with an artificial-leaf device, whi...
Hydrogen, if produced from clean and abundant sources, has the potential for solving the concerns on...
Semi-artificial photoelectrochemistry can combine state-of-the-art photovoltaic light-absorbers with...