The production of fuels from sunlight represents one of the main challenges in the development of a sustainable energy system. Hydrogen is the simplest fuel to produce and although platinum and other noble metals are efficient catalysts for photoelectrochemical hydrogen evolution earth-abundant alternatives are needed for large-scale use. We show that bioinspired molecular clusters based on molybdenum and sulphur evolve hydrogen at rates comparable to that of platinum. The incomplete cubane-like clusters (Mo{sub 3}S{sub 4}) efficiently catalyse the evolution of hydrogen when coupled to a p-type Si semiconductor that harvests red photons in the solar spectrum. The current densities at the reversible potential match the requirement of a photo...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
The construction of viable photoelectrochemical (PEC) devices for solar-driven water splitting can b...
Photocatalytic water splitting for the generation of hydrogen fuel under solar-light illumination is...
Concerns over climate change resulting from accumulation of anthropogenic carbon dioxide in the atmo...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Coupling of Earth-abundant hydrogen evolution catalysts to photoabsorbers is crucial for the product...
The efficient generation of mol. hydrogen from sunlight and water is one of the holy grails of 21st ...
A thiomolybdate [Mo3S13]2 nanocluster is a promising catalyst for hydrogen evolution reaction HER ...
Solar energy is the largest energy source on Earth. In contrast to the limited and greenhouse gases‐...
International audienceHydrogen is an energy vector with great potential, and the large‐scale develop...
In response to political and environmental motivations to develop alternative energy resources, rese...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Mol. hydrogen has emerged as an attractive candidate for a clean, renewable fuel to meet the world's...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Krassen H, Schwarze A, Friedrich B, Ataka K, Lenz O, Heberle J. Photosynthetic Hydrogen Production b...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
The construction of viable photoelectrochemical (PEC) devices for solar-driven water splitting can b...
Photocatalytic water splitting for the generation of hydrogen fuel under solar-light illumination is...
Concerns over climate change resulting from accumulation of anthropogenic carbon dioxide in the atmo...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Coupling of Earth-abundant hydrogen evolution catalysts to photoabsorbers is crucial for the product...
The efficient generation of mol. hydrogen from sunlight and water is one of the holy grails of 21st ...
A thiomolybdate [Mo3S13]2 nanocluster is a promising catalyst for hydrogen evolution reaction HER ...
Solar energy is the largest energy source on Earth. In contrast to the limited and greenhouse gases‐...
International audienceHydrogen is an energy vector with great potential, and the large‐scale develop...
In response to political and environmental motivations to develop alternative energy resources, rese...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Mol. hydrogen has emerged as an attractive candidate for a clean, renewable fuel to meet the world's...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Krassen H, Schwarze A, Friedrich B, Ataka K, Lenz O, Heberle J. Photosynthetic Hydrogen Production b...
Mild-mannered catalyst: A novel procedure to load a MoS2 co-catalyst onto the surface of silicon und...
The construction of viable photoelectrochemical (PEC) devices for solar-driven water splitting can b...
Photocatalytic water splitting for the generation of hydrogen fuel under solar-light illumination is...