Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Advancements in Battery Materials, Advanced Battery Technologies Research, Supercapacitor Materials and Fabrication, and Advanced Battery Materials and Technologies.
Efficient Multiscale Framework for Battery Thermal Management under Ultra-High-Power Pulse Loads
Challenges in Cooling Required for Fuel Cells in Aviation Applications
Thermal Management Challenges and Approaches for Liquid Hydrogen-Fueled Aircraft
Over‐Potential Tailored Thin and Dense Lithium Carbonate Growth in Solid Electrolyte Interphase for Advanced Lithium Ion Batteries
Pre-Lithiation Strategies and Energy Density Theory of Lithium-Ion and Beyond Lithium-Ion Batteries
Pre‐Lithiation Strategies for Next‐Generation Practical Lithium‐Ion Batteries
An Overview on Design Parameters of Practical Lithium‐Ion Capacitors
Theoretically Quantifying the Effect of Pre-Lithiation on Energy Density of Li-Ion Batteries
The Influence of Li4Ti5O12 Preparation Method on Lithium-Ion Capacitor Performance
The Power-Energy Coupling Effect of Mixed Hard-Carbon/Graphite Anode
Progress and perspectives on pre-lithiation technologies for lithium ion capacitors
TiO2 microbox/carbon nanotube composite-modified separator for high-performance lithium-sulfur batteries
Communication—A Simple and Scalable Pre-Lithiation Approach for High Energy and Low Cost Lithium Ion Sulfur Batteries
Comparison of Different Macroscopic Models for the Simulation of Li-S Batteries with Liquid Electrolyte
(Invited) Maximizing Energy Density of Lithium-Ion Batteries Using Pre-Lithiation Strategies
Toward high energy-density and long cycling-lifespan lithium ion capacitors: a 3D carbon modified low-potential Li<sub>2</sub>TiSiO<sub>5</sub> anode coupled with a lignin-derived activated carbon cathode
Target-oriented electrode constructions toward ultra-fast and ultra-stable all-graphene lithium ion capacitors
Self-Discharge Behavior of Lithium-Sulfur Batteries at Different Electrolyte/Sulfur Ratios
Metallically conductive TiB2 as a multi-functional separator modifier for improved lithium sulfur batteries
Hybrid lithium-ion battery-capacitor energy storage device with hybrid composite cathode based on activated carbon / LiNi0.5Co0.2Mn0.3O2
A Li-Li2S4 battery with improved discharge capacity and cycle life at low electrolyte/sulfur ratios
Lithium-Ion Capacitor Safety Testing for Commercial Application
The Influence of Anode/Cathode Capacity Ratio on Cycle Life and Potential Variations of Lithium-Ion Capacitors
Unraveling the Li<sub>2</sub>S Deposition Process on a Polished Graphite Cathode for Enhancing Discharge Capacity of Lithium–Sulfur Batteries
Stable cycling of lithium-sulfur batteries by optimizing the cycle condition
Influence of Electrode Design and Lithium Source Format on the Performance Metrics of Pre-Lithiation of Anodes in an Energy Storage Device
Investigating the Various Composite Cathode Configurations Combining Battery and Capacitor Materials in an Internal Hybrid Capacitor
Electroless Synthesis Approach for Cu<sub>2</sub>o-CuO Nanowires/Whiskers on C-Felt for Lithium Ion Battery Anode Materials
Electrode Materials, Electrolytes, and Challenges in Nonaqueous Lithium‐Ion Capacitors
Hybrid lithium-ion capacitor with LiFePO4/AC composite cathode – Long term cycle life study, rate effect and charge sharing analysis