Qihui Fei
Papers
4
Total Citations
492
H-Index
4
About
Qihui Fei is a pioneering researcher at the forefront of bioelectronics and soft robotics, whose work centers on laser-induced graphene (LIG) and paper-based wearable systems. Fei’s major contributions include developing mechanically guided 3D assembly methods that enable on-demand, reversible shape reconfiguration for human–soft actuator interactions—a breakthrough detailed in their 2020 study, which has garnered 180 citations. Expanding on this, Fei advanced LIG’s application in bioelectronics and soft actuators, demonstrating mask-free, large-area patterning on diverse substrates like polymers and textiles (113 citations). Their 2021 work on paper-based wearable electronics (109 citations) introduced biodegradable, low-cost alternatives to conventional polymer-based devices, addressing critical sustainability challenges in healthcare and human-machine interfaces. Most recently, Fei engineered a phase-separated porous nanocomposite with an ultralow percolation threshold for wireless bioelectronics (2024, 90 citations), pushing the boundaries of flexible, high-performance sensors. With over 490 cumulative citations, Fei’s innovations in scalable, eco-friendly fabrication and adaptive 3D architectures are shaping next-generation wearable technologies, offering transformative solutions for real-time health monitoring and interactive robotics.
Research Focus
Key Achievements
Top Papers
- 1
- 2Laser-induced graphene for bioelectronics and soft actuators113 citations · 2021
- 3Paper-based wearable electronics109 citations · 2021
- 4