Xinfeng Tan
Papers
1
Total Citations
6
H-Index
1
About
Xinfeng Tan is pioneering the next generation of flexible electronics through innovative contact engineering for two-dimensional (2D) materials. Their research focuses on resolving a fundamental bottleneck in device performance: the fragile interfaces between semiconductors, electrodes, and dielectrics. In their highly cited 2025 work, "Enhanced Electrical Interfaces in Flexible 2D Material Transistors via Liquid Metal and Ionic Liquid Injection," Tan introduced a paradigm-shifting solid–liquid hybrid approach that uses liquid metals and ionic liquids to create robust, high-performance electrical contacts on delicate 2D semiconductors. This breakthrough has already garnered 6 citations shortly after publication, signaling strong interest from the flexible electronics community. By enabling more reliable and efficient flexible field-effect transistors, Tan’s contributions are paving the way for bendable displays, wearable sensors, and next-generation biomedical devices. Their work stands out for its elegant solution to a long-standing materials challenge, demonstrating how unconventional interfaces can unlock new possibilities in nanoelectronics. For students and researchers exploring flexible 2D material devices, Tan’s research offers a compelling blueprint for overcoming interface limitations.
Research Focus
Key Achievements
Top Papers
- 1