Production of hydrogen (H2) from H2 storage materials is very attractive as a source of sustainable energy. We report that AuNi@ZIF-8 alloys are very efficient nanocatalysts for H2 evolution upon ammonia borane hydrolysis under visible-light illumination with turnover frequency 3.4 times higher than with the monometallic Ni catalyst in the dark. This improvement is attributed to dramatic volcano-type positive synergy optimized in Au0.5Ni0.5 @ZIF-8, for which ZIF-8 is by far the superior support, as well as to the localized surface plasmon resonance induced between 450 and 620 nm. Infrared spectra analysis and tandem reaction confirm the origin of the hydrogen atoms, reveal the reaction mechanism, and suggest how the cleavage of the B–H and ...
Hydrogen (H2) is a clean fuel that can potentially be a future solution for the storage of intermitt...
In this work, we propose a straightforward method to enhance the catalytic activity of AB dehydrogen...
Solar-to-chemical conversion processes, assisted by localised surface plasmon resonance (LSPR), are ...
Production of hydrogen (H2) from H2 storage materials is very attractive as a source of sustainable ...
The generation of H2 from materials with a high content of H atoms is attractive for both sustainabl...
International audienceProduction of hydrogen (H2) upon hydrolysis of inorganic hydrides potentially ...
Production of hydrogen (H2) upon hydrolysis of inorganic hydrides potentially is a key step in green...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
International audienceHydrogen (H2) formation from hydrogen-rich precursors is a hot topic, whereby ...
International audienceHydrogen (H2) generation and storage are actively investigated to provide a gr...
Ammonia borane hydrolysis is considered as a potential means of safe and fast method of H<sub>2</sub...
Ammonia borane (AB) is a hydrogen storage material which can produce three equivalent moles of H-2 g...
We report synergistic catalysis of plasmonic Au@Pd nanoparticles supported on titanium-doped zirconi...
Hydrogen (H2) is a clean fuel that can potentially be a future solution for the storage of intermitt...
International audienceAmmonia borane NH3BH3 (AB) and nickel (Ni) have been considered together as an...
Hydrogen (H2) is a clean fuel that can potentially be a future solution for the storage of intermitt...
In this work, we propose a straightforward method to enhance the catalytic activity of AB dehydrogen...
Solar-to-chemical conversion processes, assisted by localised surface plasmon resonance (LSPR), are ...
Production of hydrogen (H2) from H2 storage materials is very attractive as a source of sustainable ...
The generation of H2 from materials with a high content of H atoms is attractive for both sustainabl...
International audienceProduction of hydrogen (H2) upon hydrolysis of inorganic hydrides potentially ...
Production of hydrogen (H2) upon hydrolysis of inorganic hydrides potentially is a key step in green...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
International audienceHydrogen (H2) formation from hydrogen-rich precursors is a hot topic, whereby ...
International audienceHydrogen (H2) generation and storage are actively investigated to provide a gr...
Ammonia borane hydrolysis is considered as a potential means of safe and fast method of H<sub>2</sub...
Ammonia borane (AB) is a hydrogen storage material which can produce three equivalent moles of H-2 g...
We report synergistic catalysis of plasmonic Au@Pd nanoparticles supported on titanium-doped zirconi...
Hydrogen (H2) is a clean fuel that can potentially be a future solution for the storage of intermitt...
International audienceAmmonia borane NH3BH3 (AB) and nickel (Ni) have been considered together as an...
Hydrogen (H2) is a clean fuel that can potentially be a future solution for the storage of intermitt...
In this work, we propose a straightforward method to enhance the catalytic activity of AB dehydrogen...
Solar-to-chemical conversion processes, assisted by localised surface plasmon resonance (LSPR), are ...