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Engineering the ZrO
2
-Pd Interface for Selective CO
2
Hydrogenation by Overcoating an Atomically Dispersed Pd Precatalyst
Yuan Peng Du
, Ali M. Bahmanpour
, Luka Milošević
, Florent Héroguel
, Mounir D. Mensi
, Oliver Kröcher
, Jeremy S. Luterbacher
化學學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
33
引文 斯高帕斯(Scopus)
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深入研究「Engineering the ZrO
2
-Pd Interface for Selective CO
2
Hydrogenation by Overcoating an Atomically Dispersed Pd Precatalyst」主題。共同形成了獨特的指紋。
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Keyphrases
Zirconium Dioxide
100%
Atomically Dispersed
100%
CO2 Hydrogenation
100%
Interfacial Sites
100%
Overcoating
100%
Pd Precatalyst
100%
Metal Oxide
50%
CO Selectivity
50%
Heterogeneous Catalyst
50%
Nanoparticles
25%
High Temperature
25%
Reaction Pathway
25%
Deactivation
25%
Precatalyst
25%
High Thermal Stability
25%
Noble Metals
25%
Sol-gel
25%
Cu-based Catalyst
25%
Particle Growth
25%
Metal Deposition
25%
Post-synthesis
25%
Thermal Activation
25%
Methanation
25%
CO2 Reduction Reaction (CO2RR)
25%
Supported Metal Catalysts
25%
Synthetic Approaches
25%
Carbon Deposition
25%
Overcoat
25%
Bicarbonate
25%
ZrO2 Catalyst
25%
Amorphous ZrO2
25%
Particle Sintering
25%
Renewable Applications
25%
C-O Cleavage
25%
High-rate Stability
25%
Pd Clusters
25%
Selective CO2 Conversion
25%
Gel-based
25%
Reductive Treatment
25%
Sintering Resistant
25%
Chemical Engineering
CO Selectivity
100%
Carbon Dioxide
50%
Nanoparticle
50%
Hydrogenation
50%
Precious Metal
50%
Carbon Dioxide Reduction
50%
CO2 Conversion
50%
Methanation
50%
Material Science
Zirconia
100%
Carbon Dioxide
60%
Metal Oxide
40%
Sintering
40%
Nanoparticle
20%
Thermal Stability
20%
Sol-Gel
20%
Hydrogenation
20%
Particle Growth
20%