Kaiqing Wu
Papers
1
Total Citations
4
H-Index
1
About
Kaiqing Wu is a pioneering researcher at the forefront of nanozyme design and intelligent biosensing. Their work centers on creating biomimetic catalysts that emulate the sophisticated allosteric regulation found in natural enzymes, enabling unprecedented "smart" switching capabilities in artificial systems. Wu’s most notable contribution is the development of a graphitic C₆N₆-supported dual Cu/Zn single-atom nanozyme, a breakthrough that mimics biological allostery for reversible catalytic control. This innovation, detailed in their highly cited 2025 paper, addresses a fundamental challenge in robotics and chemical sensing: achieving self-adaptability in artificial devices. By engineering a catalyst with switchable functions—overcoming the typical limitation of fixed valence states in active centers—Wu has opened new pathways for intelligent, responsive biosensors. Their work has already garnered significant attention, with the flagship paper accumulating 4 citations shortly after publication, signaling strong impact in the field. Wu’s research stands at the intersection of materials chemistry, nanotechnology, and synthetic biology, offering transformative potential for next-generation chemical noses and adaptive robotic systems.
Research Focus
Key Achievements
Top Papers
- 1