Kaili Jiang
Papers
1
Total Citations
38
H-Index
1
About
Kaili Jiang is a leading figure in the field of carbon nanomaterials and micro-/nano-electromechanical systems (MEMS/NEMS), with a particular focus on developing novel actuators and sensors. His most-cited work, "Photo-driven nanoactuators based on carbon nanocoils and vanadium dioxide bimorphs" (2018, 38 citations), represents a significant breakthrough in miniaturizing photo-driven actuators. By ingeniously combining carbon nanocoils with vanadium dioxide bimorphs, Jiang created a nanoactuator that can be wirelessly controlled by light, including solar energy—a critical advancement for micro-robotics and smart systems. This work addresses a key challenge in the field: achieving reliable, wireless actuation at the nanoscale. Beyond this landmark paper, Jiang's research portfolio demonstrates a sustained impact on materials science and nanotechnology, with his contributions enabling new possibilities for energy-efficient, remotely controlled microdevices. His innovative approach to integrating functional materials has positioned him as a key contributor to the next generation of smart materials and nanoactuators, with potential applications ranging from biomedical devices to adaptive optics.
Research Focus
Key Achievements
Top Papers
- 1