Guoyi Li
Papers
2
Total Citations
49
H-Index
2
About
Guoyi Li is a rising leader in the field of advanced optoelectronics, with a primary focus on chiral perovskite materials and flexible photodetectors. Their research bridges the critical gap between fundamental materials science and practical device engineering, particularly for next-generation imaging and wearable technologies. Li’s most notable contribution is the development of a patterned chiral perovskite film for self-driven Stokes photodetectors, a breakthrough that enables on-chip full-Stokes polarization detection without external power sources—a key advancement for miniaturized robotic vision and 3D reconstruction systems. This work has garnered 26 citations since its 2024 publication, reflecting its immediate impact. Equally impressive is Li’s pioneering demonstration of flexible perovskite photodetectors with room-temperature self-healing capability, requiring no external trigger. This innovation, cited 23 times, directly addresses the critical challenge of performance degradation in wearable devices, offering a pathway to durable, self-repairing electronics for bionics and healthcare. Li’s work stands out for its dual emphasis on functionality and reliability, positioning them as a transformative figure in the development of intelligent, resilient optoelectronic systems.
Research Focus
Key Achievements
Top Papers
- 1Patterned Chiral Perovskite Film for Self‐Driven Stokes Photodetectors26 citations · 2024
- 2