Area of research
Materials Chemistry · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Catalytic Processes in Materials Science, Advanced Chemical Physics Studies, Catalysis and Oxidation Reactions, and Electrocatalysts for Energy Conversion.
Structure Sensitivity and Catalyst Restructuring for CO2 Electro-reduction on Copper
Localized Eutectic Electrolytes for Stable Aqueous Zinc-Ion Batteries
High‐Performance Cu <sub>6</sub> Sn <sub>5</sub> Alloy Electrocatalysts for Formaldehyde Oxidative Dehydrogenation and Bipolar Hydrogen Production
Elucidating the Proton Source for CO <sub>2</sub> Electro-Reduction on Cu(100) Using Many-Body Perturbation Theory
Role of Surface Hydroxyls in Atomic-Scale Copper Restructuring during CO Electroreduction
Proton-donating cations enable efficient and stable acidic CO2 reduction in membrane electrode assemblies
Establishing reaction networks in the 16-electron sulfur reduction reaction
H and CO Co-Induced Roughening of Cu Surface in CO <sub>2</sub> Electroreduction Conditions
Hierarchical design enables sufficient activated CO2 for efficient electrolysis of bicarbonate to CO
Ag–Ru interface for highly efficient hydrazine assisted water electrolysis
Atomic-scale identification of active sites of oxygen reduction nanocatalysts
Stabilizing *CO<sub>2</sub> Intermediates at the Acidic Interface using Molecularly Dispersed Cobalt Phthalocyanine as Catalysts for CO<sub>2</sub> Reduction
Tuning the Hydrogenation Selectivity of an Unsaturated Aldehyde via Single-Atom Alloy Catalysts
Selective Reduction of Nitroarenes via Noncontact Hydrogenation
Electroreduction of Captured CO<sub>2</sub> on Silver Catalysts: Influence of the Capture Agent and Proton Source
Ba promoter effect on cobalt-catalyzed ammonia decomposition kinetics: A theoretical analysis
Turning on Low-Temperature Catalytic Conversion of Biomass Derivatives through Teaming Pd<sub>1</sub> and Mo<sub>1</sub> Single-Atom Sites
First Principles Study of Aluminum Doped Polycrystalline Silicon as a Potential Anode Candidate in Li‐ion Batteries
Thermodynamic Equilibrium versus Kinetic Trapping: Thermalization of Cluster Catalyst Ensembles Can Extend Beyond Reaction Time Scales
Understanding the Decomposition of Dimethyl Methyl Phosphonate on Metal-Modified TiO<sub>2</sub>(110) Surfaces Using Ensembles of Product Configurations
Metallic Impurities in Electrolysis: Catalytic Effect of Pb Traces in Reductive Amination and Acetone Reduction
Achieving Ultra-High Selectivity to Hydrogen Production from Formic Acid on Pd–Ag Alloys
Bifunctional Ultrathin RhRu<sub>0.5</sub>‐Alloy Nanowire Electrocatalysts for Hydrazine‐Assisted Water Splitting
Electrochemical Oxidation of Methane to Methanol on Electrodeposited Transition Metal Oxides
On the origin of carbon sources in the electrochemical upgrade of CO2 from carbon capture solutions
Electrocatalytic Hydrogen Evolution at Full Atomic Utilization over ITO-Supported Sub-nano-Pt <sub> <i>n</i> </sub> Clusters: High, Size-Dependent Activity Controlled by Fluxional Pt Hydride Species
Restructuring and Activation of Cu(111) under Electrocatalytic Reduction Conditions
Elucidating the active phases of CoOx films on Au(111) in the CO oxidation reaction
Mechanistic Insights into Nonoxidative Ethanol Dehydrogenation on NiCu Single-Atom Alloys
Acetylene Semi-Hydrogenation on Intermetallic Ni–In Catalysts: Ni Ensemble and Acetylene Coverage Effects from a Theoretical Analysis
DMREF: Design of fast energy storage pseudocapacitive materials
CDS&E: Machine learning enabled modelling of dynamic nanoparticle catalysts
NSF-DFG Echem: CAS: Electrochemical Pyrrolidone Synthesis: An Integrated Experimental and Theoretical Investigation of the Electrochemical Amination of Levulinic Acid (ElectroPyr)
Self-limited etching for atomic scale surface engineering of metals: understanding and design
Modeling electrocatalysts in operating conditions: Surface restructuring and catalytic activity
Understanding the restructuring of model metal catalysts in reactant gases