Yinhao Wang
Papers
1
Total Citations
1
H-Index
1
About
Yinhao Wang is a rising innovator in the field of flexible electronics and self-powered sensing systems, with a primary focus on biomimetic tactile technologies. His most-cited work, "Self-Powered Biomimetic Tactile Sensing with Broad Linear Range via Synchronous Mechano-Electrical Regulation" (2025), introduces a groundbreaking self-powered pressure sensor that leverages a mechano-potentiometric conversion mechanism. Unlike conventional piezoelectric or triboelectric sensors, which primarily respond to dynamic stimuli, Wang’s design achieves a broad linear range and static pressure detection—a critical advancement for robotic tactile sensing and wearable electronics. Though early in its citation trajectory (1 citation), this work signals a paradigm shift in how flexible sensors can mimic human touch without external power sources. Wang’s contributions lie at the intersection of materials engineering and bioinspired design, offering a scalable path toward more intuitive human-machine interfaces. His research holds particular promise for prosthetics, soft robotics, and next-generation wearables, where energy autonomy and sensing fidelity are paramount. As a young researcher, Yinhao Wang is already shaping the future of intelligent, self-sustaining tactile systems.
Research Focus
Key Achievements
Top Papers
- 1