Summary This work investigates the effect of the addition of small amounts of Ru (0.5-1 wt%) to carbon supported Co (10 wt%) catalysts towards both NaBH4 and NH3BH3 hydrolysis for H2 production. In the sodium borohydride hydrolysis, the activity of Ru-Co/carbon catalysts was sensibly higher than the sum of the activities of corresponding monometallic samples, whereas for the ammonia borane hydrolysis, the positive effect of Ru-Co systems with regard to catalytic activity was less evident. The performances of Ru-Co bimetallic catalysts correlated with the occurrence of an interaction between Ru and Co species resulting in the formation of smaller ruthenium and cobalt oxide particles with a more homogeneous dispersion on the carbon support. I...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage stands as a promising option to conventional storage methods. There are nu...
ABSTRACT: Nowadays, the concerns about greenhouse-gas emissions from fossil fuel sources are generat...
For past decades, hydrocarbon-based fuels have been the primary source of energy as a necessity for ...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
In this work, we prepared a series of Ni foam supported Ru-Co, Ru-Co-B and Ru-Co-C catalysts in the ...
Hydrogen production by sodium borohydride through hydrolysis in alkaline solutions has been extensiv...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
Abstract: Hydrogen production by sodium borohydride through hydrolysis in alkaline solutions has bee...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage stands as a promising option to conventional storage methods. There are nu...
ABSTRACT: Nowadays, the concerns about greenhouse-gas emissions from fossil fuel sources are generat...
For past decades, hydrocarbon-based fuels have been the primary source of energy as a necessity for ...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
In this work, we prepared a series of Ni foam supported Ru-Co, Ru-Co-B and Ru-Co-C catalysts in the ...
Hydrogen production by sodium borohydride through hydrolysis in alkaline solutions has been extensiv...
Previous work by the authors has demonstrated a high rate and high yield hydrolysis of sodium borohy...
Abstract: Hydrogen production by sodium borohydride through hydrolysis in alkaline solutions has bee...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...
Chemical hydrogen storage in molecules such as ammonia (>17 wt% H2) have the unique potential to ...