Papers
8
Total Citations
615
H-Index
8
About
Jing Pan is a pioneering researcher at the intersection of optical micro/nanofiber technology and soft robotics, whose work is redefining tactile sensing for healthcare and human-machine interfaces. Their key research areas include flexible optical sensors, biomimetic tactile systems, and wearable bioelectronics. Pan’s major contributions lie in developing skin-like optical sensors that mimic human tactile perception—such as the multifunctional skin-like wearable optical sensor (SLWOS) and finger-skin-inspired flexible sensors—enabling simultaneous force, temperature, and slip detection with unprecedented sensitivity. Their work on optical micro/nanofiber-enabled compact tactile sensors has achieved over 100 citations each, with total citations exceeding 600 across their most-cited papers. Notably, Pan introduced knot-inspired optical sensors for friction measurement in dexterous robotic manipulation, a breakthrough for minimally invasive surgery and prosthetic feedback. Their innovations in waveguide photoactuators and evanescently coupled strain sensors demonstrate fast response times and high sensitivity, advancing soft robotics and electronic skins. With a portfolio spanning from 2020 to 2023, Jing Pan’s research is shaping the future of intelligent tactile systems, earning recognition as a leader in optical nanofiber-based humanoid tactility.
Research Focus
Key Achievements
Top Papers
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- 5Optical fibre taper-enabled waveguide photoactuators64 citations · 2022
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- 7Optical Nanofiber Skins for Multifunctional Humanoid Tactility39 citations · 2023
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