The synthesis of ruthenium nanoclusters (NCs) is crucially important but challenging for hydrogen production. By taking advantage of confinement effect of nanopores in 3D porous carbon and urea as nitrogen source, we developed a straightforward method for preparation of uniform Ru NCs and simultaneous nitriding of the carbon scaffolds (Ru/3DNPC). The resulting Ru/3DNPC-500 had a measured overpotential of 15 mV at 10 mA cm–2 toward hydrogen evolution reaction as well as very high turnover frequency (584 mol of H2 (mol of Ru min)−1) for hydrolytic decomposition of ammonia–borane, outperforming many previously reported Ru-based catalysts. Ru NCs confined in 3DNPC substrate can supply numerous catalytically active sites for the reactions, there...
Hydrogen evolution reaction is an important process in electrochemical energy technologies. Herein, ...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ for...
For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C,...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
Developing efficient and affordable alternatives for Pt-based electrocatalysts to promote the proced...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
The development of clean fuels for hydrogen utilization will benefit from low-cost and active cataly...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Ru/carbon catalyst has been considered as a very active catalyst in aqueous-phase hydrogenation of b...
Ru/carbon catalyst has been considered as a very active catalyst in aqueous-phase hydrogenation of b...
The development of catalytic materials for the hydrogen oxidation, hydrogen evolution, oxygen reduct...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
Hydrogen evolution reaction is an important process in electrochemical energy technologies. Herein, ...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ for...
For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C,...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
Developing efficient and affordable alternatives for Pt-based electrocatalysts to promote the proced...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
The development of clean fuels for hydrogen utilization will benefit from low-cost and active cataly...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Ru/carbon catalyst has been considered as a very active catalyst in aqueous-phase hydrogenation of b...
Ru/carbon catalyst has been considered as a very active catalyst in aqueous-phase hydrogenation of b...
The development of catalytic materials for the hydrogen oxidation, hydrogen evolution, oxygen reduct...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
The development of efficient catalysts for hydrogen generation via ammonia decomposition is crucial ...
Hydrogen evolution reaction is an important process in electrochemical energy technologies. Herein, ...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ for...
For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C,...