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Thermochemical aerobic oxidation catalysis in water can be analysed as two  coupled electrochemical half-reactions | Nature Catalysis
Thermochemical aerobic oxidation catalysis in water can be analysed as two coupled electrochemical half-reactions | Nature Catalysis

Identification of active sites for acidic oxygen reduction on carbon  catalysts with and without nitrogen doping | Nature Catalysis
Identification of active sites for acidic oxygen reduction on carbon catalysts with and without nitrogen doping | Nature Catalysis

Catalyst synthesis under CO2 electroreduction favours faceting and promotes  renewable fuels electrosynthesis | Nature Catalysis
Catalyst synthesis under CO2 electroreduction favours faceting and promotes renewable fuels electrosynthesis | Nature Catalysis

Nature Catalysis
Nature Catalysis

Enzyme-like water preorganization in a synthetic molecular cleft for  homogeneous water oxidation catalysis | Nature Catalysis
Enzyme-like water preorganization in a synthetic molecular cleft for homogeneous water oxidation catalysis | Nature Catalysis

Chemistry glows green with photoredox catalysis | Nature Communications
Chemistry glows green with photoredox catalysis | Nature Communications

Nature Catalysis
Nature Catalysis

Silica-supported Fe/Fe–O nanoparticles for the catalytic hydrogenation of  nitriles to amines in the presence of aluminium additives | Nature Catalysis
Silica-supported Fe/Fe–O nanoparticles for the catalytic hydrogenation of nitriles to amines in the presence of aluminium additives | Nature Catalysis

Design and evolution of chimeric streptavidin for protein-enabled dual gold  catalysis | Nature Catalysis
Design and evolution of chimeric streptavidin for protein-enabled dual gold catalysis | Nature Catalysis

The shape of water in zeolites and its impact on epoxidation catalysis | Nature  Catalysis
The shape of water in zeolites and its impact on epoxidation catalysis | Nature Catalysis

Nature Catalysis Template - Nature
Nature Catalysis Template - Nature

Journal Metrics | Nature Catalysis
Journal Metrics | Nature Catalysis

Nature Catalysis - Wikipedia
Nature Catalysis - Wikipedia

Using nature's blueprint to expand catalysis with Earth-abundant metals |  Science
Using nature's blueprint to expand catalysis with Earth-abundant metals | Science

Unified mechanistic understanding of CO2 reduction to CO on transition  metal and single atom catalysts | Nature Catalysis
Unified mechanistic understanding of CO2 reduction to CO on transition metal and single atom catalysts | Nature Catalysis

Nature Catalysis Impact Factor 2022 - Journal Impact Factor
Nature Catalysis Impact Factor 2022 - Journal Impact Factor

Nature Catalysis impact factor and citations:... | Exaly
Nature Catalysis impact factor and citations:... | Exaly

Steering the structure and selectivity of CO2 electroreduction catalysts by  potential pulses | Nature Catalysis
Steering the structure and selectivity of CO2 electroreduction catalysts by potential pulses | Nature Catalysis

Unifying views on catalyst deactivation | Nature Catalysis
Unifying views on catalyst deactivation | Nature Catalysis

Control of metal-support interactions in heterogeneous catalysts to enhance  activity and selectivity | Nature Catalysis
Control of metal-support interactions in heterogeneous catalysts to enhance activity and selectivity | Nature Catalysis

Directed evolution of an efficient and thermostable PET depolymerase | Nature  Catalysis
Directed evolution of an efficient and thermostable PET depolymerase | Nature Catalysis

Efficient Lewis acid catalysis of an abiological reaction in a de novo  protein scaffold | Nature Chemistry
Efficient Lewis acid catalysis of an abiological reaction in a de novo protein scaffold | Nature Chemistry

Interplay of electrochemical and electrical effects induces structural  transformations in electrocatalysts | Nature Catalysis
Interplay of electrochemical and electrical effects induces structural transformations in electrocatalysts | Nature Catalysis

Reaction product-driven restructuring and assisted stabilization of a  highly dispersed Rh-on-ceria catalyst | Nature Catalysis
Reaction product-driven restructuring and assisted stabilization of a highly dispersed Rh-on-ceria catalyst | Nature Catalysis

Simultaneous oxidative and reductive reactions in one system by atomic  design | Nature Catalysis
Simultaneous oxidative and reductive reactions in one system by atomic design | Nature Catalysis

Interface dynamics of Pd–CeO2 single-atom catalysts during CO oxidation | Nature  Catalysis
Interface dynamics of Pd–CeO2 single-atom catalysts during CO oxidation | Nature Catalysis

Tracking the formation, fate and consequence for catalytic activity of Pt  single sites on CeO2 | Nature Catalysis
Tracking the formation, fate and consequence for catalytic activity of Pt single sites on CeO2 | Nature Catalysis