The design of novel and abundant catalytic materials for water electrolysis is crucial for reaching carbon neutrality of the global energy system. A deliberate approach to this problem requires both theoretical and experimental knowledge not only of the target reactions, but also of the supplementary mechanisms affecting the catalytic activity. The doctoral project is aimed at revealing the diffusion patterns of hydrogen inside molybdenum sulphide, a promising candidate for the catalysis of the hydrogen evolution reaction. The water electrolysis process, in a broad sense, involves interaction of the catalyst with various hydrogen species, therefore, this study covers not only atomic hydrogen dynamics, but also the mobility and chemical acti...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Super martensitic stainless steels are widely used in the oil and gas industry, but failures occurre...
Molybdenum disulfide (MoS_2) has been widely examined as a catalyst containing no precious metals fo...
La conception de nouveaux et abondants matériaux catalytiques pour l'électrolyse de l'eau est crucia...
Dans une société dépendante des énergies fossiles, la production d'hydrogène à partir de l'eau par é...
In a society dependent on fossil fuels, the production of hydrogen from water by electrocatalysis (H...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Molybdenum disulfide (MoS2) and related transition metal chalcogenides can replace expensive preciou...
International audienceTransition metal dichalcogenides (TMDs), especially MoS 2 , have emerged as a ...
Molybdenum disulfide (MoS2)-based materials have emerged as promising catalysts for hydrogen evoluti...
Molybdenum disulfide (MoS2) is considered one of the most likely materials that could be turned into...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
International audienceCrystalline and amorphous transition metal chalcogenides such as MoS 2 are cur...
The objective of the research is to analyze pathways of reactions of hydrogen with oxides of carbon ...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Super martensitic stainless steels are widely used in the oil and gas industry, but failures occurre...
Molybdenum disulfide (MoS_2) has been widely examined as a catalyst containing no precious metals fo...
La conception de nouveaux et abondants matériaux catalytiques pour l'électrolyse de l'eau est crucia...
Dans une société dépendante des énergies fossiles, la production d'hydrogène à partir de l'eau par é...
In a society dependent on fossil fuels, the production of hydrogen from water by electrocatalysis (H...
Providing energy for a population projected to reach 9 billion people within the middle of this cent...
Molybdenum disulfide (MoS2) and related transition metal chalcogenides can replace expensive preciou...
International audienceTransition metal dichalcogenides (TMDs), especially MoS 2 , have emerged as a ...
Molybdenum disulfide (MoS2)-based materials have emerged as promising catalysts for hydrogen evoluti...
Molybdenum disulfide (MoS2) is considered one of the most likely materials that could be turned into...
The demand for clean and sustainable energy has set the stage for the development of affordable and ...
Molybdenum disulfide (MoS 2) and related transition metal chalcogenides can replace expensive precio...
International audienceCrystalline and amorphous transition metal chalcogenides such as MoS 2 are cur...
The objective of the research is to analyze pathways of reactions of hydrogen with oxides of carbon ...
We investigate the hydrogen evolution activity in the dark and under illumination above the band gap...
Super martensitic stainless steels are widely used in the oil and gas industry, but failures occurre...
Molybdenum disulfide (MoS_2) has been widely examined as a catalyst containing no precious metals fo...