This study reports the electrochemical activation (EPOC) of ruthenium catalyst film with alkaline ion conductors for hydrogen production via catalytic decomposition of ammonia. Two electrocatalysts, Ru/Na-βAl2O3 and Ru/KβAl2O3 have been prepared, characterized, and tested under low temperature reaction conditions (250–350 ◦C). The electrochemically supply of moderate amounts of alkaline ions (Na+ and K+) from the solid electrolyte support to the ruthenium catalyst film, activated the hydrogen production rate. The promotional effect has been attributed to a strengthening of the chemisorptive bond of weakly adsorbed N surface species, which stabilizes N adsorbed molecules on the ruthenium catalyst surface and thus facilitating the ammonia de...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
Ammonia (NH3) is a carbon-free and hydrogen-rich (17.8 wt% H2) chemical that has the potential to re...
Abstract Ru nanoparticles (NPs) and single atoms (SAs)‐based materials have been investigated as alt...
Liquid ammonia can be used as a hydrogen transportation and generation source for use in PEM fuel ce...
High throughput experimentation has the capability to generate massive, multidimensional datasets, a...
Ru catalysts supported on alumina coated monoliths has been prepared employing three different precu...
Ammonia is one of the promising carriers for hydrogen and a critical ingredient in many industries i...
In order to realize electrochemically efficient hydrogen production, various endeavors have been dev...
Five Ru-based catalysts were prepared to study the effect of the support and the role of the alkali ...
Even after a century, ammonia (NH3) synthesis from nitrogen and hydrogen through Haber‐Bosch process...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
The goal of the experiment was to find a catalyst that is less expensive, has a high activity, and f...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
AbstractLow temperature hydrogen production via ammonia decomposition is achieved by the synergetic ...
Carbon-supported, promoted Ru-based catalysts for ammonia synthesis proved to be interesting substit...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
Ammonia (NH3) is a carbon-free and hydrogen-rich (17.8 wt% H2) chemical that has the potential to re...
Abstract Ru nanoparticles (NPs) and single atoms (SAs)‐based materials have been investigated as alt...
Liquid ammonia can be used as a hydrogen transportation and generation source for use in PEM fuel ce...
High throughput experimentation has the capability to generate massive, multidimensional datasets, a...
Ru catalysts supported on alumina coated monoliths has been prepared employing three different precu...
Ammonia is one of the promising carriers for hydrogen and a critical ingredient in many industries i...
In order to realize electrochemically efficient hydrogen production, various endeavors have been dev...
Five Ru-based catalysts were prepared to study the effect of the support and the role of the alkali ...
Even after a century, ammonia (NH3) synthesis from nitrogen and hydrogen through Haber‐Bosch process...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
The goal of the experiment was to find a catalyst that is less expensive, has a high activity, and f...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
AbstractLow temperature hydrogen production via ammonia decomposition is achieved by the synergetic ...
Carbon-supported, promoted Ru-based catalysts for ammonia synthesis proved to be interesting substit...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
Ammonia (NH3) is a carbon-free and hydrogen-rich (17.8 wt% H2) chemical that has the potential to re...
Abstract Ru nanoparticles (NPs) and single atoms (SAs)‐based materials have been investigated as alt...