Area of research
Statistical and Nonlinear Physics · Biomedical Engineering
Research interest
Research interests include Model Reduction and Neural Networks, Advanced Sensor and Energy Harvesting Materials, Fluid Dynamics and Turbulent Flows, and Conducting polymers and applications.
The Trustee Celebration of Faculty Achievement, RPI, 2025
— 2025cited by 0position: selected
Proceedings of the International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering M and C 2025
— 2025cited by 0position: selected
Wearable and interactive multicolored photochromic fiber display
<i>In-situ</i> forming ultra-mechanically sensitive materials for high-sensitivity stretchable fiber strain sensors
Smart fibers for energy conversion and storage
Thermal‐Disrupting Interface Mitigates Intercellular Cohesion Loss for Accurate Topical Antibacterial Therapy
Surrogate modeling for fluid flows based on physics-constrained deep learning without simulation data
Hierarchically arranged helical fibre actuators driven by solvents and vapours
Integration: An Effective Strategy to Develop Multifunctional Energy Storage Devices
A redox-active gel electrolyte for fiber-shaped supercapacitor with high area specific capacitance
Novel Wearable Energy Devices Based on Aligned Carbon Nanotube Fiber Textiles
Wearable Solar Cells by Stacking Textile Electrodes
Self‐Powered Energy Fiber: Energy Conversion in the Sheath and Storage in the Core
Weaving Efficient Polymer Solar Cell Wires into Flexible Power Textiles
A Lightweight Polymer Solar Cell Textile that Functions when Illuminated from Either Side
Miniature wire-shaped solar cells, electrochemical capacitors and lithium-ion batteries
Wearable Solar Cells by Stacking Textile Electrodes
Efficient Dye-Sensitized Photovoltaic Wires Based on an Organic Redox Electrolyte
Core‐Sheath Carbon Nanostructured Fibers for Efficient Wire‐Shaped Dye‐Sensitized Solar Cells
Carbon Nanostructured Fibers As Counter Electrodes in Wire-Shaped Dye-Sensitized Solar Cells