Xiaojuan Ming
Papers
3
Total Citations
49
H-Index
3
About
Xiaojuan Ming is a rising innovator in the fields of flexible electronics, wearable technology, and soft robotics. Her research focuses on developing advanced materials and devices that bridge human-machine interaction with biomimetic design. Ming’s major contributions include the creation of an all-textile-based tactile sensor array, fabricated via a facile cross-stitch method, which enables seamless integration into wearable human-machine interfaces—a work that has garnered 30 citations. She has also pioneered isopropanol-regulated adhesion-controllable conductive gels, achieving robust bioelectric signal monitoring and enabling flexible underwater robots, with 16 citations. Most recently, Ming introduced a biomimetic low-temperature contracting fiber inspired by the mimic octopus’s dual “command-execution-feedback” system, achieving high stroke and controllable actuations for applications in artificial muscles and intelligent micromachines. Her work not only demonstrates high actuation performance but also incorporates feedback sensitivity, addressing a key challenge in soft robotics. With a growing citation impact and a portfolio of innovative, nature-inspired solutions, Ming is establishing herself as a key contributor to next-generation wearable and robotic technologies.
Research Focus
Key Achievements
Top Papers
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