The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this context, this paper presents novel insights into improving the ammonia decomposition activity of ruthenium nanoparticles supported on carbon nanotubes (CNT) by nitrogen doping. Our results can be applied to develop more active systems capable of delivering hydrogen on demand, with a view to move towards the low temperature target of less than 150 °C. Herein we demonstrate that nitrogen doping of the CNT support enhances the activity of ruthenium nanoparticles for the low temperature ammonia decomposition with turnover frequency numbers at 400 °C of 6200 LH2 mol$_{Ru}$$^{-1}$ h$^{-1}$, higher than the corresponding value of unmodified CNT suppor...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
The catalysts with platinum-group metals on nanostructured carbons have been a very active field of ...
Nitrogen doping on carbon nanotubes (CNTs) was carried out using N(2) microwave plasma at the powers...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
AbstractLow temperature hydrogen production via ammonia decomposition is achieved by the synergetic ...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ form...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ for...
Ammonia decomposition catalyzed by Ru nanoparticles supported on carbon nanotubes offers an efficien...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
The catalysts with platinum-group metals on nanostructured carbons have been a very active field of ...
Nitrogen doping on carbon nanotubes (CNTs) was carried out using N(2) microwave plasma at the powers...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
AbstractLow temperature hydrogen production via ammonia decomposition is achieved by the synergetic ...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ form...
AbstractCesium-promoted ruthenium nanoparticles supported on multi-walled carbon nanotubes catalysts...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ for...
Ammonia decomposition catalyzed by Ru nanoparticles supported on carbon nanotubes offers an efficien...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
Ammonia is one of the most produced chemicals in the world. Its industrial production emerged in the...
The catalysts with platinum-group metals on nanostructured carbons have been a very active field of ...
Nitrogen doping on carbon nanotubes (CNTs) was carried out using N(2) microwave plasma at the powers...