Biying Tan
Papers
3
Total Citations
183
H-Index
3
About
Dr. Biying Tan is a leading researcher in bio-inspired electronics and neuromorphic devices, with a focus on developing ultralow-power artificial sensory systems. Her major contributions lie in the design of optical synapses and tactile sensors that mimic biological functions, such as biomimetic eyes and skin-inspired pressure detection. Her most cited work, "Ultralow Power Optical Synapses Based on MoS₂ Layers by Indium‐Induced Surface Charge Doping for Biomimetic Eyes" (2021, 110 citations), introduces a novel indium-doping technique that reduces synaptic device power consumption to an astonishing 68.9 aJ, enabling energy-efficient visual prosthetics and robotics. She also advanced tactile sensing with a skin-inspired gradient pore structure sensor (2022, 69 citations), achieving broad-range response and ultrahigh pressure resolution. These innovations address critical challenges in device integration and power efficiency, positioning Dr. Tan at the forefront of neuromorphic engineering. Her work has been featured in *Advanced Materials* and has garnered significant attention for its potential to revolutionize human-machine interfaces and biomedical implants.
Research Focus
Key Achievements
Top Papers
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