Xueyong Wei
Papers
4
Total Citations
352
H-Index
4
About
Xueyong Wei is a leading researcher in micro/nano electromechanical systems (MEMS/NEMS), flexible sensors, and nanorobotic characterization. His most impactful work includes the development of graded interlock-structured iontronic pressure sensors, which achieve both high sensitivity and high linearity over a broad pressure range—a critical breakthrough for robotic tactile sensing and wearable health monitors. This work has garnered over 316 citations, reflecting its significance in addressing the longstanding trade-off between sensitivity and linearity in soft sensors. Wei also pioneered the iTRo nanorobotic system for in-situ SEM twisting tests of one-dimensional materials, enabling precise mechanical characterization at the microscale. His contributions extend to nonlinear oscillator synchronization and ultra-wide dynamic range torque sensing, demonstrating a versatile approach to solving fundamental challenges in small-scale mechanics and sensing. Through these innovations, Wei has advanced both the fundamental understanding and practical application of micro/nanomaterials, making him a key figure in the development of next-generation sensor technologies and robotic systems.
Research Focus
Key Achievements
Top Papers
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- 4Robot-aided fN∙m torque sensing within an ultrawide dynamic range6 citations · 2021