Huishan Zhang
Papers
4
Total Citations
133
H-Index
4
About
Huishan Zhang is pioneering the next generation of flexible bioelectronics, drawing inspiration from nature to create sensors that are both highly sensitive and remarkably robust. His research focuses on developing wearable textile electronics and stretchable strain sensors for applications ranging from kinesiology monitoring to human-machine interaction. Zhang’s major contributions include the design of bioinspired sandwich-structured pressure sensors using graphene oxide and carbon nanotube nanocomposites, which achieve exceptional electromechanical performance for wearable textiles—a work that has garnered 75 citations. He has further advanced the field with biomimetic all-PDMS-coated multistage structures for flexible sensors, enabling high-linearity, wide-sensing-range capabilities for biomechanics detection and robotic gripping. Notably, his mushroom-inspired capacitive 3-D force tactile sensor demonstrates a novel approach to enhancing robotic grasping perception. With over 130 cumulative citations across his most-cited papers, Zhang’s innovations are driving the development of smarter, more intuitive interfaces between humans and machines, promising transformative impacts on healthcare, rehabilitation, and interactive robotics.
Research Focus
Key Achievements
Top Papers
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