"Powering Life through Energy Conversion"
Energy conversion technologies for healthcare and robotics
Energy conversion technologies for healthcare and robotics
Core Technologies
Fundamental energy conversion mechanisms lie at the heart of our research. We investigate electro-mechanical, electro-thermal, and electro-electrical coupling to understand and engineer piezoelectric, triboelectric, pyroelectric, thermoelectric, and ferroelectric phenomena. These core technologies provide the scientific foundation for next-generation energy harvesting, self-powered sensing, and intelligent soft electronic systems.
Energy conversion for robotic systems
AI-Driven Design & Digital Manufacturing
Artificial intelligence (AI) accelerates the design and optimization of soft energy devices, while digital manufacturing enables rapid prototyping and scalable fabrication of next-generation electronic systems.
Soft Thermoelectrics & Intelligent Thermal Sensing
We develop printable soft thermoelectric materials that efficiently convert heat into electricity. Their seamless integration with flexible thermal sensing enables next-generation robotic systems capable of adaptive perception and intelligent interaction.
Energy conversion for disease monitoring
Multimodal Sensing & Intelligent Healthcare
We develop energy conversion technologies that power multimodal sensing systems, enabling comprehensive physiological monitoring through electrophysiological, mechanical, electrochemical, and thermal signals. Combined with AI-driven data analysis, these intelligent platforms provide early disease detection, precision diagnostics, personalized healthcare, and adaptive closed-loop therapeutic strategies.