Papers
7
Total Citations
190
H-Index
4
About
Meng Su is a pioneering researcher at the intersection of flexible electronics, wearable sensors, and intelligent human-machine interaction. Their work centers on developing novel sensing platforms that bridge the gap between physical stimuli and digital perception, with a particular focus on electronic textiles (e-textiles) and iontronic sensors. Su’s most impactful contribution is the development of an electronic textile using a dyeing method for multiresolution physical kineses monitoring (82 citations), which demonstrated a scalable approach to creating wearable, multipoint sensing fabrics. Another landmark achievement is the creation of a “touchable gustation” sensor using a Hoffmeister gel iontronic device (65 citations), enabling a chemical–mechanical interface that allows users to “taste” through touch—a breakthrough in sensory augmentation. Su has also advanced ambient human-computer interaction with a wearable perovskite-based shadow recognition sensor (14 citations) and contributed to agricultural technology with a deep learning method for detecting pollenable stamens in pear trees (FPG-YOLO, 19 citations). Their work on perovskite-graphene optical-mechanical sensors (2025) further pushes the boundaries of printed electronics for intuitive machine interfaces. With over 190 citations across their top papers, Su’s research is shaping the future of non-obtrusive, multifunctional wearable systems.
Research Focus
Key Achievements
Top Papers
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- 2Touchable Gustation via a Hoffmeister Gel Iontronic Sensor65 citations · 2023
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