AbstractCoRe4 catalysts highly active for ammonia synthesis at ambient pressure and 400°C can be prepared without an ammonolysis stage. Pre-treatments under 3:1 H2:N2 and 3:1 H2:Ar atmospheres are shown to influence catalytic performance with the latter treatment leading to an induction period prior to development of activity upon switching to an ammonia synthesis feedstream. The difference in behaviour between the two pre-treatment atmospheres is manifested in temperature programmed nitrogen isotopic exchange experiments where H2:Ar treated material is inactive and its H2:N2 treated counterpart is active
Due to its essential use as a fertilizer, ammonia synthesis from nitrogen and hydrogen is considered...
Carbon-supported, promoted Ru-based catalysts for ammonia synthesis proved to be interesting substit...
A series of Co–Ce–Al–O mesoporous catalysts synthesised by self-assembly is shown to be efficient fo...
CoRe4 catalysts highly active for ammonia synthesis at ambient pressure and 400 °C can be prepared w...
AbstractCoRe4 catalysts highly active for ammonia synthesis at ambient pressure and 400°C can be pre...
Cobalt rhenium ammonia synthesis catalysts which are highly active at ambient pressure and 400°C un...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
Driven by the desire to develop novel catalyst formulations which are applicable for localised, more...
On-demand production of hydrogen from ammonia is a challenge limiting the implementation of ammonia ...
In this article, an overview of the application of selected metal nitrides as ammonia synthesis cata...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
The denitridation behaviour of binary iron, cobalt and rehnium nitrides under H2 /Ar has been invest...
The preparation route has been shown to have a significant influence upon the catalytic behaviour of...
Ammonia (NH3) is a carbon-free and hydrogen-rich (17.8 wt% H2) chemical that has the potential to re...
The present study presents an empirical screening study of the catalytic performance of a variety of...
Due to its essential use as a fertilizer, ammonia synthesis from nitrogen and hydrogen is considered...
Carbon-supported, promoted Ru-based catalysts for ammonia synthesis proved to be interesting substit...
A series of Co–Ce–Al–O mesoporous catalysts synthesised by self-assembly is shown to be efficient fo...
CoRe4 catalysts highly active for ammonia synthesis at ambient pressure and 400 °C can be prepared w...
AbstractCoRe4 catalysts highly active for ammonia synthesis at ambient pressure and 400°C can be pre...
Cobalt rhenium ammonia synthesis catalysts which are highly active at ambient pressure and 400°C un...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
Driven by the desire to develop novel catalyst formulations which are applicable for localised, more...
On-demand production of hydrogen from ammonia is a challenge limiting the implementation of ammonia ...
In this article, an overview of the application of selected metal nitrides as ammonia synthesis cata...
In this perspective we present recent experimental and computational progress in catalytic ammonia s...
The denitridation behaviour of binary iron, cobalt and rehnium nitrides under H2 /Ar has been invest...
The preparation route has been shown to have a significant influence upon the catalytic behaviour of...
Ammonia (NH3) is a carbon-free and hydrogen-rich (17.8 wt% H2) chemical that has the potential to re...
The present study presents an empirical screening study of the catalytic performance of a variety of...
Due to its essential use as a fertilizer, ammonia synthesis from nitrogen and hydrogen is considered...
Carbon-supported, promoted Ru-based catalysts for ammonia synthesis proved to be interesting substit...
A series of Co–Ce–Al–O mesoporous catalysts synthesised by self-assembly is shown to be efficient fo...