Area of research
Renewable Energy, Sustainability and the Environment · Catalysis
Research interest
Research interests include Electrochemistry, Materials science, Chemistry, Electrolyte, Catalysis, and Crystallization.
Next-Generation Computational and Experimental Tools for Understanding Nucleation and Growth of Metal–Organic Frameworks
Identifying High Ionic Conductivity Compositions of Ionic Liquid Electrolytes Using Features of the Solvation Environment
Advancements in dinitrogen activation for catalytic breakthroughs
Magnesium‐Mediated Electrochemical Synthesis of Ammonia
Recent innovations and assessment of ammonia synthesis at an industrial scale
Dynamic structural and morphological transformations in high-entropy metal-organic frameworks
Nonaqueous electrochemical reactive CO2 capture and conversion of 10 % CO2 feed to mixed carboxylic acids
Role of Intermolecular Interactions in Deep Eutectic Solvents for CO <sub>2</sub> Capture: Vibrational Spectroscopy and Quantum Chemical Studies
Effect of K<sup>+</sup> Force Fields on Ionic Conductivity and Charge Dynamics of KOH in Ethylene Glycol
Pathway toward Scalable Energy-Efficient Li-Mediated Ammonia Synthesis
Metal Nitride as a Mediator for the Electrochemical Synthesis of NH<sub>3</sub>
High-throughput measurements of CO2 permeance and solubility in ionic liquid reveal a synergistic role of ionic interactions and void fractions
Understanding Activity Trends in Electrochemical Dinitrogen Oxidation over Transition Metal Oxides
Engineering advancements in microfluidic systems for enhanced mixing at low Reynolds numbers
Metal–Organic Framework-Templated Synthesis of Nickel–Alumina Nanocatalysts Improves Catalyst–Support Interaction for Higher Activity and Stability in Biogas Reforming under Controlled Oxidizing Conditions
Group contribution method for rapid estimation of crystal growth rates
Non‐Aqueous Electrochemical CO <sub>2</sub> Reduction to Multivariate C <sub>2</sub> ‐Products Over Single Atom Catalyst at Current Density up to 100 mA cm <sup>−2</sup>
Screening transition metal electrodes for achieving near 100% selectivity to urea <i>via</i> electroreduction of NO<sub>3</sub><sup>−</sup> and CO<sub>2</sub> at 100 mA cm<sup>−2</sup> current density
Electrochemical Reduction of Nitrates on CoO Nanoclusters‐Functionalized Graphene with Highest Mass Activity and Nearly 100% Selectivity to Ammonia
Advancements in Environmentally Sustainable Technologies for Ethylene Production
Microkinetic insights into the role of catalyst and water activity on the nucleation, growth, and dissolution during COF-5 synthesis
Determination of spinal tracer dispersion after intrathecal injection in a deformable CNS model
High-pressure electrochemistry: a new frontier in decarbonization
Emerging microfluidic platforms for crystallization process development
Theory-Enabled High-Throughput Screening of Ion Dissociation Explains Conductivity Enhancements in Diluted Ionic Liquid Mixtures
Achievements, Challenges, and Perspectives on Nitrogen Electrochemistry for Carbon‐Neutral Energy Technologies
Migration-assisted, moisture gradient process for ultrafast, continuous CO<sub>2</sub> capture from dilute sources at ambient conditions
Fully-integrated electrochemical system that captures CO<sub>2</sub>from flue gas to produce value-added chemicals at ambient conditions
Three-Step Mechanism of Antisolvent Crystallization
Autocatalysis and Oriented Attachment Direct the Synthesis of a Metal–Organic Framework