Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic Catalyst by Eliminating the Non-selective Fe(0) Phase

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Last updated 21 setembro 2024
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Materials, Free Full-Text
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Promoting propane dehydrogenation over PtFe bimetallic catalysts by optimizing the state of Fe species - ScienceDirect
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Promoting propane dehydrogenation over PtFe bimetallic catalysts by optimizing the state of Fe species - ScienceDirect
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Combining CO2 reduction with propane oxidative dehydrogenation over bimetallic catalysts
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic Catalyst by Eliminating the Non-selective Fe(0) Phase
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Subsurface catalysis-mediated selectivity of dehydrogenation reaction
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Catalytic performance for n-butane DDH a n-butane conversion and butene
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Catalysts, Free Full-Text
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Nanostructured Catalysts toward Efficient Propane Dehydrogenation
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Propane conversion, propylene selectivity (a), and propylene yield (b)
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Size Dependence of Pt Catalysts for Propane Dehydrogenation: from Atomically Dispersed to Nanoparticles
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Comparison of direct and CO2-oxidative dehydrogenation of propane - ScienceDirect
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Combining CO2 reduction with propane oxidative dehydrogenation over bimetallic catalysts
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Propane to olefins tandem catalysis: a selective route towards light olefins production - Chemical Society Reviews (RSC Publishing) DOI:10.1039/D1CS00357G
Promoting Propane Dehydrogenation with CO2 over the PtFe Bimetallic  Catalyst by Eliminating the Non-selective Fe(0) Phase
Fe-Based Nano-Materials in Catalysis. - Abstract - Europe PMC

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