Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Ion, Fast ion conductor, Electrolyte, Computer science, and Ionic bonding.
A general framework to govern machine learning oriented materials data quality
Descriptors Divide‐and‐Conquer Enables Multifaceted and Interpretable Materials Structure–Activity Relationship Analysis
Direct calculation of effective mobile ion concentration in lithium superionic conductors
Liquid‐Like Li‐Ion Conduction in Oxides Enabling Anomalously Stable Charge Transport across the Li/Electrolyte Interface in All‐Solid‐State Batteries
Identifying Migration Channels and Bottlenecks in Monoclinic NASICON‐Type Solid Electrolytes with Hierarchical Ion‐Transport Algorithms
High-throughput screening platform for solid electrolytes combining hierarchical ion-transport prediction algorithms
Uncovering the Potential of M1‐Site‐Activated NASICON Cathodes for Zn‐Ion Batteries
Relationships Between Na<sup>+</sup> Distribution, Concerted Migration, and Diffusion Properties in Rhombohedral NASICON
CAVD, towards better characterization of void space for ionic transport analysis
A Database of Ionic Transport Characteristics for Over 29 000 Inorganic Compounds
Efficient potential-tuning strategy through p-type doping for designing cathodes with ultrahigh energy density
A highly efficient and informative method to identify ion transport networks in fast ion conductors
Identifying Chemical Factors Affecting Reaction Kinetics in Li-air Battery via ab initio Calculations and Machine Learning
Correlated Migration Invokes Higher Na<sup>+</sup>‐Ion Conductivity in NaSICON‐Type Solid Electrolytes