Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include X-ray Diffraction in Crystallography, Crystallization and Solubility Studies, Advanced Thermoelectric Materials and Devices, and Chalcogenide Semiconductor Thin Films.
Weak Electron–Phonon Coupling and Enhanced Thermoelectric Performance in n‐type PbTe–Cu<sub>2</sub>Se via Dynamic Phase Conversion
Enabling deeper learning on big data for materials informatics applications
Pressure-induced ferroelectric-like transition creates a polar metal in defect antiperovskites Hg3Te2X2 (X = Cl, Br)
Na<sub>3</sub>Zr<sub>2</sub>Si<sub>2</sub>PO<sub>12</sub>: A Stable Na<sup>+</sup>-Ion Solid Electrolyte for Solid-State Batteries
Fundamental Insights from a Single‐Crystal Sodium Iridate Battery
Discordant nature of Cd in PbSe: off-centering and core–shell nanoscale CdSe precipitates lead to high thermoelectric performance
Probing Electrochemically Induced Structural Evolution and Oxygen Redox Reactions in Layered Lithium Iridate
Accelerated discovery of metallic glasses through iteration of machine learning and high-throughput experiments
A general-purpose machine learning framework for predicting properties of inorganic materials
Ultrathin Lithium-Ion Conducting Coatings for Increased Interfacial Stability in High Voltage Lithium-Ion Batteries
Electrical energy storage for transportation—approaching the limits of, and going beyond, lithium-ion batteries
Collaborative Research: Elements: Phonon Database Generation, Analysis, and Visualization for Data Driven Materials Discovery
Collaborative Research: Computational Thermochemistry of Compounds
Collaborative Research: Integrated Measurement and Predictive Modeling of Adsorbate Coverage and Compositional Effects on Catalytic Activity
Collaborative Research: Predictive Modeling of Catalysis with Multiple Adsorbate Species
Collaborative Research: First-Principles Engineering of Nanoscale Kinetics in Advanced Hydrides