Jianqiang Tan
Papers
1
Total Citations
36
H-Index
1
About
Jianqiang Tan is a leading figure in the development of advanced piezoelectric materials for flexible electronics and wearable sensing technologies. His research focuses on enhancing the performance of polymer-ceramic composites, particularly polyvinylidene fluoride (PVDF)-based films integrated with barium titanate (BaTiO₃) and reduced graphene oxide (rGO). Tan’s most cited work, "Enhanced piezoelectric performance of multi-layered flexible polyvinylidene fluoride–BaTiO₃–rGO films for monitoring human body motions" (2022), has garnered 36 citations, demonstrating its impact in the field. This study introduced a novel multi-layered architecture that significantly boosts piezoelectric output, enabling precise, real-time monitoring of human motions such as joint bending and muscle contractions. By optimizing the synergy between PVDF’s flexibility, BaTiO₃’s high piezoelectric coefficient, and rGO’s conductivity, Tan’s contributions pave the way for self-powered, wearable health monitors and soft robotics. His work bridges materials science and biomedical engineering, offering scalable solutions for next-generation sensors. Tan’s achievements underscore his role in advancing flexible electronics, with his research cited as a key reference for designing high-performance, durable piezoelectric devices.
Research Focus
Key Achievements
Top Papers
- 1