The Cs-promoted Ru nanocatalysts supported on mesoporous carbon materials (denoted as Cs-Ru/MPC) and microporous activated carbon materials (denoted as Cs-Ru/AC) were prepared for the sustainable synthesis of ammonia under mild reaction conditions (<500 °C, 1 MPa). Both Ru and Cs species were homogeneously impregnated into the mesostructures of three commercial available mesoporous carbon materials annealed at 1500, 1800 and 2100 °C (termed MPC-15, MPC-18 and MPC-21, respectively), resulting in a series of Cs-Ru/MPC catalysts with Ru loadings of 2.5−10 wt % and a fixed Cs loading of 33 wt %, corresponding to Cs/Ru molar ratios of 2.5−10. However, the Ru and Cs species are larger than the pore mouths of microporous a...
Ammonia is regarded as a safe hydrogen energy carrier due to its high hydrogen content and narrow fl...
The synthesis of ruthenium nanoclusters (NCs) is crucially important but challenging for hydrogen pr...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
A series of novel mesoporous carbon-supported, Ba-promoted, Ru catalysts with Ba/Ru ratios of 0.1...
A series of alkali- and/or alkali-earth-promoted, carbon-supported Ru catalysts have been prepared b...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Efficient and stable catalysts for ammonia synthesis under mild conditions are required to meet the ...
Carbon nanotube-confined Ru catalyst for ammonia synthesis and Fischer-Tropsch synthesi
Ammonia synthesis over ruthenium catalysts supported on different carbon materials using Ba or K com...
816-819Cesium promoted ruthenium catalysts supported on active carbon (AC) with the weight ratio of ...
A series of 3 wt% Ru embedded on ordered mesoporous carbon (OMC) catalysts with different pore sizes...
Development of highly active catalyst for producing COX-free H-2 from ammonia decomposition is criti...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C,...
Catalytic ammonia decomposition has been of increasing interests as a means of supplying pure hydrog...
Ammonia is regarded as a safe hydrogen energy carrier due to its high hydrogen content and narrow fl...
The synthesis of ruthenium nanoclusters (NCs) is crucially important but challenging for hydrogen pr...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...
A series of novel mesoporous carbon-supported, Ba-promoted, Ru catalysts with Ba/Ru ratios of 0.1...
A series of alkali- and/or alkali-earth-promoted, carbon-supported Ru catalysts have been prepared b...
In the global energy transition, green ammonia can serve as a carbon-free energy vector and is suite...
Efficient and stable catalysts for ammonia synthesis under mild conditions are required to meet the ...
Carbon nanotube-confined Ru catalyst for ammonia synthesis and Fischer-Tropsch synthesi
Ammonia synthesis over ruthenium catalysts supported on different carbon materials using Ba or K com...
816-819Cesium promoted ruthenium catalysts supported on active carbon (AC) with the weight ratio of ...
A series of 3 wt% Ru embedded on ordered mesoporous carbon (OMC) catalysts with different pore sizes...
Development of highly active catalyst for producing COX-free H-2 from ammonia decomposition is criti...
This study reveals the effect of the catalytic 1D supports (carbon, ceria, alumina and titanate) for...
For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C,...
Catalytic ammonia decomposition has been of increasing interests as a means of supplying pure hydrog...
Ammonia is regarded as a safe hydrogen energy carrier due to its high hydrogen content and narrow fl...
The synthesis of ruthenium nanoclusters (NCs) is crucially important but challenging for hydrogen pr...
Ammonia synthesis via the high-temperature and -pressure Haber–Bosch (HB) process at large centraliz...