Yilun Luo
Papers
2
Total Citations
46
H-Index
2
About
Yilun Luo is a pioneering researcher in the field of nanomanufacturing and robotic nanomanipulation, with a focus on integrating automation and control systems at the nanoscale. His key research areas include carbon nanotube (CNT)-based device assembly, dielectrophoretic microchamber design, and sensor-referenced guidance for atomic force microscopy (AFM). Luo’s most notable contribution is the development of an automated nanomanufacturing system that combines a novel DEP microchamber with a robotic deposition workstation, enabling precise and scalable assembly of CNT-based nanodevices—a breakthrough that has garnered 38 citations and laid the groundwork for high-throughput nanofabrication. Additionally, his work on sensor-referenced guidance and control for AFM-based nanomanipulation (8 citations) addresses the critical challenge of real-time visual feedback, proposing model-based solutions to enhance efficiency and accuracy in nanoenvironments. Luo’s research bridges robotics, microfluidics, and nanotechnology, offering practical pathways for advancing nanodevice manufacturing. His achievements underscore a commitment to overcoming fundamental barriers in nanoscale automation, making him a key figure in the evolution of intelligent nanomanufacturing systems.
Research Focus
Key Achievements
Top Papers
- 1Automated Nanomanufacturing System to Assemble Carbon Nanotube Based Devices38 citations · 2009
- 2Sensor referenced guidance and control for robotic nanomanipulation8 citations · 2007