Daoheng Sun
Papers
6
Total Citations
58
H-Index
4
About
Daoheng Sun is a multidisciplinary researcher whose work spans microfluidics, advanced manufacturing, and flexible sensing technologies. His research has made significant contributions to the fabrication and control of microfluidic systems, most notably through the development of nanofiber self-consistent additive manufacturing processes for 3D microfluidic devices — work that has garnered 21 citations and represents a meaningful advance in analytical chemistry and biomedical sensor platforms. Sun has also pioneered innovative microfluidic components, including 3D-printed membrane microvalves, microdecoders, and a digitally controlled concave-convex membrane lens system designed for non-electrical actuation in challenging environments such as strong electromagnetic fields and deep water. Beyond microfluidics, Sun has expanded his research into flexible electronics and soft robotics, developing composite thin-film strain gauges for harmonic reducers in industrial robots, hollow fiber-based strain sensors for soft cylindrical actuators, and liquid metal-based flexible pressure sensors capable of operating at elevated temperatures. This breadth reflects his commitment to solving real-world engineering challenges across robotics, wearables, and smart manufacturing. With a growing citation record and contributions across multiple high-impact domains, Sun represents an emerging voice in micro- and nano-scale engineering research.
Research Focus
Key Achievements
Top Papers
- 1
- 23D-printed membrane microvalves and microdecoder12 citations · 2019
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