Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Electrocatalyst and Oxygen evolution, with related work in Catalysis, Water splitting, Supercapacitor. Notable publications include 'Synthesis and Activities of Rutile IrO 2 and RuO 2 Nanoparticles for Oxygen Evolution in Acid and Alkaline Solutions', 'Activating lattice oxygen redox reactions in metal oxides to catalyse oxygen evolution', and 'Conductive MOF electrodes for stable supercapacitors with high areal capacitance'.
Confined Water for Catalysis: Thermodynamic Properties and Reaction Kinetics
Hybrid solvating electrolytes for practical sodium-metal batteries
Lithium-ion intercalation by coupled ion-electron transfer
A multimodal robotic platform for multi-element electrocatalyst discovery
Reactivating Molecular Cobalt Catalysts for Electrochemical CO<sub>2</sub> Conversion to Methanol
Stable Metal–Organic Electrocatalysts for Anion-Exchange Membrane Water Electrolyzers by Defect Engineering
Electrolyte effects in proton–electron transfer reactions and implications for renewable fuels and chemicals synthesis
Electrochemical CO<sub>2</sub> Conversion toward Sustainable Methanol Production: Experimental Considerations and Outlook
Extreme-fast-charging of energy-dense lithium metal batteries enabled by controlled grafting of ionic polymers
An actor–critic algorithm to maximize the power delivered from direct methanol fuel cells
Autonomous Discovery of Polymer Electrolyte Formulations with Warm-Start Batch Bayesian Optimization
CO2-to-methanol electroconversion on a molecular cobalt catalyst facilitated by acidic cations
Effect of ion-specific water structures at metal surfaces on hydrogen production
Facet-Dependent Oxygen Evolution Reaction Activity of IrO<sub>2</sub> from Quantum Mechanics and Experiments
A cross-scale framework for evaluating flexibility values of battery and fuel cell electric vehicles
Tuning the Reconstruction of Metal–Organic Frameworks during the Oxygen Evolution Reaction
Best practices for oxygen electrocatalysis
Dynamic optimization of proton exchange membrane water electrolyzers considering usage‐based degradation
Towards atom-level understanding of metal oxide catalysts for the oxygen evolution reaction with machine learning
Iridium Oxide Coordinatively Unsaturated Active Sites Govern the Electrocatalytic Oxidation of Water
Electrolyte Dependence of Li<sup>+</sup> Transport Mechanisms in Small Molecule Solvents from Classical Molecular Dynamics
Upshifting Lithium Plating Potential To Enhance Electrochemical Lithium Mediated Ammonia Synthesis
Platinum/Tantalum Carbide Core–Shell Nanoparticles with Sub‐Monolayer Shells for Methanol and Oxygen Electrocatalysis
Electrocatalysts for Inorganic and Organic Waste Nitrogen Conversion
Computational Insights into Electrolyte-Dependent Li-Ion Charge-Transfer Kinetics at the Li <sub> <i>x</i> </sub> CoO <sub>2</sub> Interface
Mechanistic insights into the origin of the oxygen migration barrier
A Cobalt–Platinum–Ruthenium System for Acidic Methanol Oxidation
Design Space for PEM Electrolysis for Cost-Effective H<sub>2</sub> Production Using Grid Electricity
Sequencing polymers to enable solid-state lithium batteries
Chemistry-Informed Machine Learning for Polymer Electrolyte Discovery