Papers
3
Total Citations
15
H-Index
2
About
Can Xie is a rising researcher at the frontier of soft robotics and smart materials, with a focus on developing next-generation tactile and sensing technologies. Their work centers on the theoretical modeling and practical application of soft magnetoelectric composites for mechanical sensing, where they have pioneered voltage response mechanisms that enable highly sensitive, flexible tactile sensors. In a 2024 study (4 citations), Xie demonstrated how multiple cooperative structures can enhance the voltage response of these sensors, laying groundwork for durable, wearable electronics. Their most impactful paper (2026, 10 citations) provides a comprehensive theoretical framework for soft magnetoelectric composites, offering key insights into how mechanical deformation translates into electrical signals—a critical advance for soft robotics and human-machine interfaces. Additionally, Xie has contributed to the design of vacuum-powered soft bending actuators (2025, 1 citation), introducing a novel chamber-collapse mechanism that improves safety and reliability in soft robotic systems. With a growing citation record and a clear trajectory toward practical, high-performance soft sensors and actuators, Xie is establishing themselves as a notable innovator in the intersection of materials science, mechanics, and robotics.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3