Shuying Wu
Papers
11
Total Citations
1,066
H-Index
11
About
Shuying Wu is a leading researcher in the field of stretchable and wearable electronics, with a focus on developing advanced materials and sensors for human motion detection, electronic skin, and soft robotics. Her work centers on the rational design of conductive polymer nanocomposites and hydrogel-based strain sensors, achieving remarkable sensitivity and stretchability through innovative material selection and structural engineering. Wu’s most-cited paper, “Conductive Polymer Nanocomposites for Stretchable Electronics” (2021, 200 citations), provides a comprehensive framework for material design in emerging technologies. She has also made significant contributions to ultrasensitive pressure sensors (138 citations) and flexible piezoresistive flow sensors using vertical graphene nanosheets (118 citations). Her research on synergistic carbon nanofiber and graphene nanoplates (114 citations) and multimodal capacitive-piezoresistive sensors (106 citations) demonstrates her ability to integrate multiple sensing mechanisms for complex force measurements. With over 850 total citations across her top ten papers, Wu’s work has profound implications for wearable medical devices, human-robot interaction, and prosthetics. Her recent exploration of biomimetic electronic skin through hierarchical polymer design (2023) further underscores her commitment to pushing the boundaries of sensor performance and biocompatibility.
Research Focus
Key Achievements
Top Papers
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- 8Biomimetic Electronic Skin through Hierarchical Polymer Structural Design49 citations · 2023
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