Lanyue Gan
Papers
1
Total Citations
14
H-Index
1
About
Dr. Lanyue Gan is a rising leader in flexible electronics and tactile sensing, whose work bridges fundamental materials physics with next-generation device engineering. Her research centers on pressure sensors for applications in wearable electronics and humanoid robotics, where she tackles the critical challenge of balancing sensitivity, power efficiency, and mechanical robustness. In her landmark 2025 paper, "Contact-dominated localized electric-displacement-field-enhanced pressure sensing," Dr. Gan introduced a novel sensor architecture that overcomes the performance limitations of conventional capacitive sensors. By engineering a contact-dominated regime that amplifies localized electric displacement fields, her design achieves exceptional sensitivity while maintaining low power consumption—a breakthrough for energy-constrained flexible systems. Though early in her career, this work has already garnered 14 citations, signaling strong impact in a rapidly evolving field. Dr. Gan’s contributions are particularly notable for their practical orientation: her sensors are designed for integration into soft robotics and human-machine interfaces, addressing real-world needs for durable, high-fidelity tactile feedback. As her citation trajectory accelerates, she is poised to become a defining voice in the next wave of intelligent, skin-like electronic systems.
Research Focus
Key Achievements
Top Papers
- 1