Theoretical Insights into Oxidative and Non-Oxidative Dehydrogenation of Alkanes over Nanometer Metal and Metal Oxide Catalysts
Evolution of the Oxidation State and Morphology of Subnanometer to Nanometer Size Cobalt Catalysts: Detailed Insights from Combined in situ and ex situ Studies
Tuning Performance in Selective Oxidative Reactions via Catalyst Size, Composition, Support, Additives, and by Controlling the Oxidation State of the Catalyst under Reaction Conditions
Evolution of the Oxidation State and Morphology of Subnanometer to Nanometer Size Cobalt Catalysts: Detailed Insights from Combined in situ and ex situ Studies
Tuning Performance in Selective Oxidative Reactions via Catalyst Size, Composition, Support, Additives, and by Controlling the Oxidation State of the Catalyst under Reaction Conditions
An Overview of Ammonia SCR on Cu-Supported Zeolites
DFT Evidence for Fast NOx SCR on Isolated Cu Sites in SSZ-13
NO Oxidation : A Probe Reaction on Cu – SSZ13
Theoretical Evidence for Dimeric Cu Species as the Active Sites for NO Oxidation on Cu-SSZ-13 Zeolite Catalyst
Copper Dimers Are the Active Sites for NO Oxidation on Cu/ZSM-5
DFT Evidence for Fast NOx SCR on Isolated Cu Sites in SSZ-13
NO Oxidation : A Probe Reaction on Cu – SSZ13
Theoretical Evidence for Dimeric Cu Species as the Active Sites for NO Oxidation on Cu-SSZ-13 Zeolite Catalyst
Copper Dimers Are the Active Sites for NO Oxidation on Cu/ZSM-5
CO2 Reuse through the Fischer-Tropsch Synthesis: A Viable Route?
Enabling Small-Scale Methanol Synthesis Reactors through the Adoption of Highly Conductive Structured Catalysts
Fundamental Understanding of the NOx Storage through a Novel Spectrokinetic Approach
The Release of NOx Stored over LNT Catalysts: The First Step of the Reduction Process
Enabling Small-Scale Methanol Synthesis Reactors through the Adoption of Highly Conductive Structured Catalysts
Fundamental Understanding of the NOx Storage through a Novel Spectrokinetic Approach
The Release of NOx Stored over LNT Catalysts: The First Step of the Reduction Process
Transformation of Aldose Sugars to Platform Furans Using CrCl3 with HCl in Aqueous Media
A DFT Study of the Acid-Catalyzed Conversion of 2,5-Dimethylfuran and Ethylene to p-Xylene
Error Analysis in Semi-Empirical Methods for Microkinetic Modeling
DFT-based Microkinetic Modeling of Ethanol Dehydration on γ-Al2O3
Theoretical Insights into Reactions of C5 Furans on Metal Surfaces
First-Principles TPD Simulation of Nitrogen Desorption on Ni/Pt(111) Bimetallic Catalyst
Correlating the Aqueous Phase Reforming Activity with the Structure of Pt-M Bimetallic Catalysts
A DFT Study of the Acid-Catalyzed Conversion of 2,5-Dimethylfuran and Ethylene to p-Xylene
Error Analysis in Semi-Empirical Methods for Microkinetic Modeling
DFT-based Microkinetic Modeling of Ethanol Dehydration on γ-Al2O3
Theoretical Insights into Reactions of C5 Furans on Metal Surfaces
First-Principles TPD Simulation of Nitrogen Desorption on Ni/Pt(111) Bimetallic Catalyst
Correlating the Aqueous Phase Reforming Activity with the Structure of Pt-M Bimetallic Catalysts
Exolution of Group VIII Metals from Lanthanum-doped Strontium Titanate for SOFC Applications
Reaction Pathways for Glucose and Related Oxygenates on Pd(111) and Pt(111)
Grafting of Thermally Stable Pd@Ceria Core-Shell Nanoparticles on SOFC Electrode Surfaces
Effect of CeO2 Addition by Atomic Layer Deposition on Surface Reactions in SOFC Cathodes
Studies of Thin Film Metal Oxide Nanocrystal and Metal-metal Oxide Core-shell Model Catalysts
Reaction Pathways for Glucose and Related Oxygenates on Pd(111) and Pt(111)
Grafting of Thermally Stable Pd@Ceria Core-Shell Nanoparticles on SOFC Electrode Surfaces
Effect of CeO2 Addition by Atomic Layer Deposition on Surface Reactions in SOFC Cathodes
Studies of Thin Film Metal Oxide Nanocrystal and Metal-metal Oxide Core-shell Model Catalysts