Peihong Wang
Papers
2
Total Citations
372
H-Index
2
About
Peihong Wang is a leading researcher in flexible electronics, energy harvesting, and self-powered sensing systems. His pioneering work on shape memory polymers for body motion energy harvesting and self-powered mechanosensing, published in 2018 and garnering 359 citations, introduced the first transformable smart energy harvester that combines stretchability, deformability, and durability—key requirements for next-generation portable electronics. This foundational contribution has significantly advanced the field of wearable energy solutions. More recently, Wang has pushed the boundaries of human–machine interaction (HMI) with his 2024 study on performance-enhanced flexible self-powered tactile sensor arrays using lotus root-derived porous carbon. This work, already cited 13 times, addresses critical challenges in tactile sensing by eliminating the need for external power supplies and expanding material choices, enabling real-time HMI for robotic systems. Wang’s research consistently bridges materials innovation with practical device applications, demonstrating high impact through citation counts and novel approaches to sustainable, self-powered electronics. His achievements underscore a commitment to developing durable, eco-friendly technologies that power the future of wearable and robotic interfaces.
Research Focus
Key Achievements
Top Papers
- 1
- 2