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.
Pre‐Lithiation Strategies for Next‐Generation Practical Lithium‐Ion Batteries
An Overview on Design Parameters of Practical Lithium‐Ion Capacitors
The Influence of Li4Ti5O12 Preparation Method on Lithium-Ion Capacitor Performance
Progress and perspectives on pre-lithiation technologies for lithium ion capacitors
(Invited) Maximizing Energy Density of Lithium-Ion Batteries Using Pre-Lithiation Strategies
Hybrid lithium-ion battery-capacitor energy storage device with hybrid composite cathode based on activated carbon / LiNi0.5Co0.2Mn0.3O2
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
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
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
Improving the specific energy of Li-Ion capacitor laminate cell using hybrid activated Carbon/LiNi0.5Co0.2Mn0.3O2 as positive electrodes
Influence of Lithium Iron Phosphate Positive Electrode Material to Hybrid Lithium-Ion Battery Capacitor (H-LIBC) Energy Storage Devices
Investigation of Pre-lithiation in Graphite and Hard-Carbon Anodes Using Different Lithium Source Structures
A hybrid electrochemical device based on a synergetic inner combination of Li ion battery and Li ion capacitor for energy storage
Pre-Lithiation of Carbon Anodes Using Different Lithium - Sources
Long Cycle Life LiFePO<sub>4</sub> / AC Hybrid Cathodes for Lithium Ion Capacitors
Visualizing electromagnetic fields in metals by MRI
LiFePO <sub>4</sub> / AC Composite Cathodes − Long Term Cycle Life Study and Capacity Sharing Analysis
Pre-Lithiation Treatment of Carbon Anodes Loaded with Different Li-Source Structures
Publisher’s Note: “Visualizing electromagnetic fields in metals by MRI” [AIP Advances 7, 025310 (2017)]
Lithium Ion Capacitor Safety Testing
Internal Hybrid Li-Ion Battery and Li-Ion Capacitor Energy Storage Cells
<i>In Situ</i> NMR Tracks Real-Time Li Ion Movement in Hybrid Supercapacitor–Battery Device
Visualizing Electromagnetic Vacuum by MRI
Visualizing Electromagnetic Vacuum by MRI
Visualizing Electromagnetic Vacuum by MRI
Chitosan‐based gel film electrolytes containing ionic liquid and lithium salt for energy storage applications
(Invited) Li-Air Flow Batteries