Papers
3
Total Citations
166
H-Index
3
About
Xihu Wu is an emerging researcher at the forefront of organic bioelectronics, neuromorphic engineering, and soft robotics, with pioneering contributions to organic electrochemical transistor (OECT) technology and tactile sensing systems. His most influential work, published in 2020 and garnering 88 citations, introduced a groundbreaking all-solid-state OECT architecture utilizing contact-modulated ionic transfer doping, achieving ultra-high sensitivity at remarkably low operating voltages — a critical advance that overcame the longstanding limitation of liquid electrolytes in conventional devices. Building on this foundation, Wu has pushed the boundaries of human-machine interaction by developing artificial organic afferent nerve systems capable of closed-loop tactile feedback for intelligent robots, a 2024 study that has already accumulated 41 citations. His 2023 work on ladder-type conjugated polymer-based OECTs, cited 37 times, demonstrated signal processing-free surface electromyogram control of robotic hands with exceptional stability and low power consumption. Across these contributions, Wu has consistently bridged materials science, flexible electronics, and bioinspired robotics, establishing himself as a significant voice in next-generation wearable and neuromorphic device research.
Research Focus
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Top Papers
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