Papers
2
Total Citations
36
H-Index
2
About
Huiyu Huang is a rising innovator in the fields of acoustofluidics and flexible sensing technologies. Her research bridges the gap between advanced materials and biomedical applications, with a particular focus on developing high-precision tools for non-invasive manipulation and tactile sensing. Huang’s most notable contribution is her pioneering work on acoustic black hole profiles for ultrasonic tweezers, a breakthrough that enables highly efficient particle trapping and manipulation without physical contact. This 2022 paper has already garnered 32 citations, reflecting its immediate impact on the acoustofluidics community. Additionally, she developed a high-sensitivity flexible electronic skin by embedding a liquid-core poly(vinylidene fluoride) fiber into silicone rubber. This innovative design allows the sensor to detect surface vibration pressure—including waveform, frequency, and amplitude—with remarkable accuracy, opening new possibilities for wearable health monitoring and human-machine interfaces. Huang’s work demonstrates a rare ability to combine theoretical acoustics with practical, soft-material engineering, positioning her as a key contributor to next-generation biomedical devices and smart sensing systems.
Research Focus
Key Achievements
Top Papers
- 1Acoustic black hole profiles for high-performance ultrasonic tweezers32 citations · 2022
- 2A high-sensitivity flexible electric skin using a liquid-core PVDF fiber4 citations · 2020