Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Advancements in Battery Materials, Advanced Battery Technologies Research, Advanced Battery Materials and Technologies, and Advanced battery technologies research.
Operando Depth-Resolved Measurement of Solvation Entropy, Interfacial Transport, and Charge-Transfer Kinetics in Lithium-Ion Batteries.
Substitution-Mediated Calcination of Nickel-Based Cathodes: Decoupling Lithiation and Crystallization.
Minimizing Interfacial Resistance between Polymer Electrolytes and Metal Electrodes Using Applied Current
Multiple <i>Operando</i> Fields Can Identify a Predictive Mass Transport Theory in Electrolytes
Thermodynamic and Kinetic Mechanisms Governing the Synthesis of Nickel-Poor Cathodes
Minimization of Cathode|Solid-Electrolyte Interfacial Delamination through the Application of Interphase Layers
Study of Void Formation at the Lithium|Solid Electrolyte Interface
Unveiling Morphology and Crystallinity Dynamics in Ni<sub><i>x</i></sub>Mn<sub>1–<i>x</i></sub>CO<sub>3</sub> Cathode Precursors through Batch-Mode Coprecipitation
Modeling Analysis of Ball-Milling Process for Battery-Electrode Synthesis
Stable, Impermeable Hexacyanoferrate Anolyte for Nonaqueous Redox Flow Batteries
Designing Particle Morphologies for Materials with Solid Transport Limitations: A Case Study of Lithium and Manganese Rich Cathode Oxides
How machine learning can extend electroanalytical measurements beyond analytical interpretation.
Energy storage solutions to decarbonize electricity through enhanced capacity expansion modelling
Characterizing Ion Transport in Electrolytes via Concentration and Velocity Profiles
Understanding the Influence of Li<sub>7</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12</sub> Nanofibers on Critical Current Density and Coulombic Efficiency in Composite Polymer Electrolytes
On Relative Importance of Vehicular and Structural Motions in Defining Electrolyte Transport
Elucidating the Molecular Origins of the Transference Number in Battery Electrolytes Using Computer Simulations.
Transference Number of Electrolytes from the Velocity of a Single Species Measured by Electrophoretic NMR
Reaction Current Heterogeneity at the Interface between a Lithium Electrode and Polymer/Ceramic Composite Electrolytes
Understanding the Influence of Li<sub>7</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12</sub> Nanofibers on Critical Current Density and Coulombic Efficiency in Composite Polymer Electrolytes.
Using Thermal Interface Resistance for Noninvasive Operando Mapping of Buried Interfacial Lithium Morphology in Solid-State Batteries.
Designing better electrolytes
Designing better electrolytes.
The Importance of Surface Oxygen for Lithiation and Morphology Evolution during Calcination of High‐Nickel NMC Cathodes
Transport and mechanical behavior in PEO-LLZO composite electrolytes
Effect of Solvent Motion on Ion Transport in Electrolytes
Unconventional Charge Transport in MgCr<sub>2</sub>O<sub>4</sub> and Implications for Battery Intercalation Hosts
Toward Bottom-Up Understanding of Transport in Concentrated Battery Electrolytes.
Unconventional Charge Transport in MgCr<sub>2</sub>O<sub>4</sub> and Implications for Battery Intercalation Hosts.
Modeling of electrode, electrolyte, and interfaces of lithium-sulfur batteries