Papers
2
Total Citations
32
H-Index
2
About
Chengeng Qu is a researcher whose work bridges the frontiers of nanotechnology and intelligent robotics. His most impactful contribution is the pioneering concept of an AFM-based nano robot for cellular-level surgery, detailed in his 2012 paper, which has garnered 30 citations. This work leverages the atomic force microscope to perform precise surgical interventions on living cells, opening new avenues in nanomedicine and biomanipulation. More recently, Qu has advanced the field of sports robotics with a novel ball-racket rebound model for table tennis robots. Published in 2024, this model enhances the accuracy and computational efficiency of predicting ball trajectory and spin, directly improving racket design and robotic performance. By integrating continuous contact force dynamics, Qu’s work addresses a critical challenge in real-time robotic interaction. His research demonstrates a unique ability to apply mechanical principles across vastly different scales—from the nanoscale manipulation of cells to the dynamic control of robotic sports. This versatility marks Qu as an innovator in both biomedical nanotechnology and intelligent robotic systems.
Research Focus
Key Achievements
Top Papers
- 1Cellular-Level Surgery Using Nano Robots30 citations · 2012
- 2