Yuming Mo
Papers
2
Total Citations
25
H-Index
2
About
Yuming Mo is a researcher advancing the field of tactile sensing, with a focus on flexible, high-performance sensor designs for robotic and wearable applications. Mo’s key contributions lie in developing novel tactile sensors that combine piezoresistive effects with electromagnetic induction to achieve multi-dimensional force detection. In their most-cited work (17 citations, 2022), Mo introduced a tactile sensor that integrates these two principles, enabling enhanced sensitivity and robustness for contact force measurement. A second highly cited paper (8 citations, 2022) presents a flexible tactile sensor based on a piezoresistive thin film and elastomer, capable of detecting three-dimensional (3D) forces. This sensor features a compact structure with four independent sensing cells made from a custom piezoresistive ink and a pectinate conductive pattern, offering a scalable approach to 3D force sensing. Mo’s work is notable for addressing key challenges in tactile sensing—such as flexibility, multi-axis detection, and sensor integration—making it relevant for prosthetics, human-machine interfaces, and soft robotics. With these contributions, Mo is establishing a strong foundation for next-generation tactile systems that are both sensitive and mechanically compliant.
Research Focus
Key Achievements
Top Papers
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