Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Advanced Battery Technologies Research, Advancements in Battery Materials, Advanced Battery Materials and Technologies, and Fuel Cells and Related Materials.
Effect of temperature gradients in large-format pouch-type NMC/graphite lithium-ion battery on degradation
Effect of temperature gradients in large-format pouch-type NMC/graphite lithium-ion battery on degradation
AI-driven optimization of SOC-dependent parameters for reduced order electrochemical thermal model of lithium-ion batteries
Experimental characterization of heat generation behavior of LCO-Graphite lithium-ion battery for smartphone
Quantifying energy dissipations and their impact on the energy efficiency of lithium-ion batteries
Optimized multi-stage constant current fast charging protocol suppressing lithium plating for lithium-ion batteries using reduced order electrochemical-thermal-life model
Mechanical stress-driven electrochemical thermal model for graphite-silicon blended composite anode in lithium-ion battery
Mechanical stress-driven electrochemical thermal model for graphite-silicon blended composite anode in lithium-ion battery
Experimental characterization of heat generation behavior of LCO-Graphite lithium-ion battery for smartphone
Optimization of multi-stage constant currents fast charging protocol with negative pulses considering Lithium plating, stripping, and heat generation rates for Lithium-ion batteries
A Physics-Based Piecewise Kinetic-Diffusion Control Mechanism for SEI Formation during Electrochemical Degradation
Quantifying Energy Dissipations and Their Impact on the Energy Efficiency of Lithium-Ion Batteries
Experimental characterization of heat generation behavior of LCO-Graphite Lithium-ion Battery for Smartphone
Quantifying energy dissipations and their impact on the energy efficiency of lithium-ion batteries
AI-driven optimization of SOC-dependent parameters for reduced order electrochemical thermal model of lithium-ion batteries
Optimized multi-stage constant current fast charging protocol suppressing lithium plating for lithium-ion batteries using reduced order electrochemical-thermal-life model
Modeling Rate Dependent Volume Change in Porous Electrodes in Lithium-Ion Batteries
Modeling Rate Dependent Volume Change in Porous Electrodes in Lithium-Ion Batteries
Reduced Order Electrochemical-Thermal Modeling of Cylindrical Cells Containing Graphite-Silicon Anodes Considering Thermal Gradients and Hysteresis
Quantifying the Entropy and Enthalpy of Insertion Materials for Battery Applications Via the Multi-Species, Multi-Reaction Model
Thermal Characterization of Lithium-Ion Batteries under Varying Operating Conditions
Optimized Multi-Stage Constant Current Fast Charging Protocol Suppressing Lithium Plating for Lithium-Ion Batteries Using Reduced Order Electrochemical-Thermal-Life Model
Optimization of Multi-Stage Constant Currents Fast Charging Protocol with Negative Pulses Considering Lithium Plating, Stripping, and Heat Generation Rates for Lithium-Ion Batteries
Mechanical Stress-Driven Model for Graphite-Silicon Blended Composite Anode in Lithium-Ion Battery
Characterization and analysis of the effect of pressure on the performance of a large format NMC/C lithium-ion battery
Experimental studies of effects of temperature gradients on performance of pouch type large format NMC/C lithium-ion battery
Experimental studies of effects of temperature gradients on performance of pouch type large format NMC/C lithium-ion battery
Characterization and analysis of the effect of pressure on the performance of a large format NMC/C lithium-ion battery
Energy Management Strategies for Series-Parallel Hybrid Electric Vehicles Considering Fuel Efficiency and Degradation of Lithium-Ion Batteries
Start-Up Charging Strategy for a Large-Format NMCA/Graphite Pouch Cell from Subzero Temperature Using an Electrochemical, Thermal, and Mechanical Life Model