The role of metal-support interaction in determining CO2 activation and conversion for methane production was examined over (CeO2, TiO2 and SiO2) supported Ni nanoparticles. Hexagonal Ni nanocrystallites on CeO2 with strong metal-oxide interaction selectively produced CH4 at (up to forty-fold) higher turnover frequencies (TOFs) than that recorded over (TiO2 and SiO2) supported Ni nanoparticles. A stronger adsorption of CO2 and H2 was identified for Ni/CeO2 using temporal analysis of products (TAP). Decoration/encapsulation of Ni nanoparticles by a thin layer of reduced ceria can decrease the catalytic capacity for CO2 activation/conversion. An initial loss of activity in the long-term stability evaluation over Ni/CeO2 can be linked to a rec...
Production of ‘renewable Methane’ has attracted renewed research interest as a fundamental probe rea...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Oxygen carriers with active sites have attained wide attention for chemical looping reforming of CH4...
Summarization: The structure sensitivity of CO2 methanation was explored over nickel particles (10–2...
The activity of reducible metal oxide Sm2O3, CeO2, and ZnO as Ni nanoparticles support was investiga...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
We prepared uniformly-sized Ni nanoparticles on ceria-zirconia (CZ) as model catalysts for CO2 metha...
Ni/CeO2 catalysts are very active and selective for total hydrogenation of CO2 to methane, but the n...
Effective catalysts for the direct conversion of methane to methanol and for methane's dry reforming...
project code: T1EDK-00094 IF/01381/2013/CP1160/CT0007 UIDB/50020/2020 UIDB/50006/2020Nickel particle...
Ni-based oxides are widely investigated as catalysts for CO2 methanation due to their high activity,...
CO2 methanation structured catalysts, made by a layer of Ru–CeO2 or Ni–CeO2 (Ru/Ce = 3/97; Ni/Ce = 1...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
In situ structural and chemical state characterization of Rh/CeO 2 and Ni/CeO 2 catalysts during atm...
Strong metal-support interaction (SMSI) has been widely recognized for platinum-group metals on redu...
Production of ‘renewable Methane’ has attracted renewed research interest as a fundamental probe rea...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Oxygen carriers with active sites have attained wide attention for chemical looping reforming of CH4...
Summarization: The structure sensitivity of CO2 methanation was explored over nickel particles (10–2...
The activity of reducible metal oxide Sm2O3, CeO2, and ZnO as Ni nanoparticles support was investiga...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
We prepared uniformly-sized Ni nanoparticles on ceria-zirconia (CZ) as model catalysts for CO2 metha...
Ni/CeO2 catalysts are very active and selective for total hydrogenation of CO2 to methane, but the n...
Effective catalysts for the direct conversion of methane to methanol and for methane's dry reforming...
project code: T1EDK-00094 IF/01381/2013/CP1160/CT0007 UIDB/50020/2020 UIDB/50006/2020Nickel particle...
Ni-based oxides are widely investigated as catalysts for CO2 methanation due to their high activity,...
CO2 methanation structured catalysts, made by a layer of Ru–CeO2 or Ni–CeO2 (Ru/Ce = 3/97; Ni/Ce = 1...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
In situ structural and chemical state characterization of Rh/CeO 2 and Ni/CeO 2 catalysts during atm...
Strong metal-support interaction (SMSI) has been widely recognized for platinum-group metals on redu...
Production of ‘renewable Methane’ has attracted renewed research interest as a fundamental probe rea...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Oxygen carriers with active sites have attained wide attention for chemical looping reforming of CH4...