Nianqiang Zhang
Papers
3
Total Citations
45
H-Index
2
About
Nianqiang Zhang is a rising innovator in the field of flexible electronics and micro/nano manufacturing, with a focused expertise in the design and fabrication of high-performance flexible pressure sensors. His major contributions center on developing novel polymer-based piezoresistive sensors, where he has pioneered the use of various micro/nanostructures arrays to achieve superior sensitivity and flexibility. In his most cited work, a 2024 paper on polymer-based flexible piezoresistive pressure sensors, Zhang systematically explored how different micro/nanostructure designs can optimize sensor performance, garnering 34 citations for its practical insights. He further advanced the field by engineering a double-layer flexible pressure sensor featuring etched hierarchical microstructures and serpentine electrodes, which achieved enhanced performance metrics and has already attracted 9 citations. Zhang’s research also delves into the fundamental mechanics of imprinting and buckling, as seen in his experimental and simulation investigation of V-groove/wrinkle hierarchical arrays, a study that supports the scalable manufacturing of flexible strain sensors for applications in soft robotics and smart clothing. With a growing citation impact and a clear trajectory toward solving real-world sensing challenges, Zhang is establishing himself as a key contributor to next-generation wearable and flexible electronic technologies.
Research Focus
Key Achievements
Top Papers
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