Papers
2
Total Citations
257
H-Index
2
About
Dr. Shu Wan is a leading innovator in flexible and wearable sensor technology, with a primary focus on capacitive pressure sensors for advanced tactile and biomedical applications. Her seminal 2016 work on graphene oxide as a high-performance dielectric material, which has garnered 246 citations, established a foundational approach for creating highly sensitive and reliable pressure sensors. This early contribution significantly advanced the field by demonstrating how two-dimensional materials could be engineered to enhance sensor performance. More recently, Dr. Wan has pushed the boundaries of biomimetic sensing with her 2024 study on a flexible capacitive pressure sensor featuring a hybrid porous PDMS/SA hydrogel structure. This sensor achieves remarkable performance, operating effectively across a large pressure regime up to 400 kPa while offering an adjustable pressure threshold. With a fast response time of 45 ms and recovery speed of 70 ms, it is ideally suited for rapid, noxious pressure detection, such as in electronic skin for pain sensing. Her work has been demonstrated in a robotic hand, showcasing its potential for next-generation prosthetics and human-machine interfaces.
Research Focus
Key Achievements
Top Papers
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