Area of research
Electrical and Electronic Engineering · Physiology
Research interest
Research interests include Advancements in Battery Materials, Alzheimer's disease research and treatments, Intermetallics and Advanced Alloy Properties, and Advanced Battery Materials and Technologies.
Unveiling the Role of Critical Impurities in Spent LiFePO <sub>4</sub> Cathodes for Scalable Direct Regeneration
Decoding Air‐Exposure Degradation Chemistry and Improving Strategy for Layered Sodium Transition Metal Oxide Cathodes
Understanding and Controlling Structural Defects and Disordering in LiNi<sub>0.5</sub>Mn<sub>1.5</sub>O<sub>4</sub> Cathodes for Direct Recycling
Upcycling of Spent LiNi<sub>0.33</sub>Co<sub>0.33</sub>Mn<sub>0.33</sub>O<sub>2</sub> to Single-Crystal Ni-Rich Cathodes Using Lean Precursors
CAREER: Compositional Learning and Understanding of the Physical World
CCSS: Modeling and Learning Space-time Structures for Real-time Environment Perception
Hardware Friendly Machine Learning Integrated Circuits and System for Low Power Wearable Wireless Electrocardiogram Sensors
CAREER:Integrated Research and Education on Delta-Sigma Based Digital Signal Processing Circuits for Low-Power Intelligent Sensors
I-Corps: Non-weighted Digital Circuits for Low Power Wearable Medical Device
Collaborative Research:CCSS:Low-ComplexityWireless Sensor Architectures Based on Asynchronous Processing
Modeling of Unified Channel Mobility for Quantum Hydrodynamic Simulation of Nanoscale MOSFETs
Hydrodynamic Modeling of Impact Ionization Based on High- Energy Electron Subpopulation
Simulation of High Speed Pseudomorphic Heterojunction Bipolar Transistors
US-Sweden Cooperative Research: Numerical Modeling of Hot- Electron Effects as a Source of Excess Noise in Schottky- Barrier Diodes
Simulation of High Speed AlGaAs/GaAs Heterojunction Bipolar Transistors
Radio-Frequency Plasma Heating at the Lower-Hybrid Resonance
Radio Frequency Plasma Heating Via Mode Conversion