Fance Ji
Papers
1
Total Citations
117
H-Index
1
About
Fance Ji is a materials scientist whose pioneering work focuses on self-healing polymers and multifunctional nanocomposites. Her research integrates dynamic covalent chemistry, particularly the Diels–Alder reaction, with advanced nanomaterials to create materials that autonomously repair damage and restore functionality. Her most cited work, "NIR induced self-healing electrical conductivity polyurethane/graphene nanocomposites based on Diels−Alder reaction" (2018, 117 citations), demonstrates a breakthrough in combining near-infrared light-triggered healing with electrical conductivity. By embedding graphene into a polyurethane matrix with reversible Diels–Alder bonds, Ji achieved a material that not only heals mechanical cracks under NIR exposure but also recovers its electrical properties—a critical advance for flexible electronics, sensors, and soft robotics. This work has inspired further studies in stimuli-responsive materials and self-healing conductive systems. Ji’s contributions are notable for their practical focus on scalable, multifunctional designs, bridging fundamental chemistry with real-world applications. Her research continues to influence the development of durable, intelligent materials for next-generation electronic and energy devices.
Research Focus
Key Achievements
Top Papers
- 1