Tailoring the interfaces between active metal centers and supporting materials is an efficient strategy to obtain a superior catalyst for a certain reaction. Herein, an active interface between Ru and CeO2 was identified and constructed by adjusting the morphology of CeO2 support, such as rods (R), cubes (C), and octahedra (O), to optimize both the activity and the stability of Ru/CeO2 catalyst for propane combustion. We found that the morphology of CeO2 support does not significantly affect the chemical states of Ru species but controls the interaction between the Ru and CeO2, leading to the tuning of oxygen vacancy in the CeO2 surface around the Ru–CeO2 interface. The Ru/CeO2 catalyst possesses more oxygen vacancy when CeO2-R with predomi...
Propylene is one of the most crucial building blocks in chemical and petrochemical industry. In the ...
The Sabatier reaction (CO2 + H2 → CH4 + H2O) can contribute to renewable energy storage by convertin...
The Sabatier reaction (CO 2 + H 2 → CH 4 + H 2O) can contribute to renewable energy storage by conve...
Ruthenium (Ru) nanoparticles (∼3 nm) with mass loading ranging from 1.5 to 3.2 wt % are supported on...
In this study, CeO2 rods (CeO2/r), cubes (CeO2/c) and octahedra (CeO2/o) supported catalysts with id...
Three morphology-controlled CeO2, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
Catalysts comprising Ru supported on CeO2 with different morphologies have been widely investigated ...
Ru/CeO<sub>2</sub> catalysts with different amounts of surface oxygen vacancies were prepared by cha...
The conversion of CO2 towards added valuable products is considered as a potential alternative to ac...
Three morphology-controlled CeO₂, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
Heterogeneous catalysis performs on specific sites of a catalyst surface even if specific sites of m...
In last 40 years, CeO2 has been found to play a major role in the area of auto exhaust catalysis due...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
Integrated CO2 capture and methanation (ICCM) is attracting more attention to promote the reduction ...
The reaction of ethanol has been investigated on Ru/CeO2 in steady state conditions as well as with ...
Propylene is one of the most crucial building blocks in chemical and petrochemical industry. In the ...
The Sabatier reaction (CO2 + H2 → CH4 + H2O) can contribute to renewable energy storage by convertin...
The Sabatier reaction (CO 2 + H 2 → CH 4 + H 2O) can contribute to renewable energy storage by conve...
Ruthenium (Ru) nanoparticles (∼3 nm) with mass loading ranging from 1.5 to 3.2 wt % are supported on...
In this study, CeO2 rods (CeO2/r), cubes (CeO2/c) and octahedra (CeO2/o) supported catalysts with id...
Three morphology-controlled CeO2, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
Catalysts comprising Ru supported on CeO2 with different morphologies have been widely investigated ...
Ru/CeO<sub>2</sub> catalysts with different amounts of surface oxygen vacancies were prepared by cha...
The conversion of CO2 towards added valuable products is considered as a potential alternative to ac...
Three morphology-controlled CeO₂, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
Heterogeneous catalysis performs on specific sites of a catalyst surface even if specific sites of m...
In last 40 years, CeO2 has been found to play a major role in the area of auto exhaust catalysis due...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
Integrated CO2 capture and methanation (ICCM) is attracting more attention to promote the reduction ...
The reaction of ethanol has been investigated on Ru/CeO2 in steady state conditions as well as with ...
Propylene is one of the most crucial building blocks in chemical and petrochemical industry. In the ...
The Sabatier reaction (CO2 + H2 → CH4 + H2O) can contribute to renewable energy storage by convertin...
The Sabatier reaction (CO 2 + H 2 → CH 4 + H 2O) can contribute to renewable energy storage by conve...