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March 18, 2026npj Flexible Electronics0 citationsOpen Access

Self-revival iontronic neuromorphic devices for robust human-machine interaction

YLYanfei LiJCJianzhong ChenSTShilin Tang

Key Points

  • To develop flexible iontronic neuromorphic devices capable of self-revival after mechanical damage for improved human-machine interactions.
  • Fabricated devices using earthworm-inspired designs and polymer ion gels.
  • Engineered a hemispheric array structure to prevent crack propagation.
  • Tested tracking accuracy in motion-cognition nerve systems under normal and damaged conditions.
  • Achieved a human body movement tracking accuracy of 98%.
  • Maintained a 96% tracking accuracy rate after self-revival.
  • Highlighted the devices' potential application in prosthetics and rehabilitation.

Abstract

Flexible neuromorphic devices exhibit substantial promise for applications in next-generation intelligent human-machine interaction systems. While, the primary hurdle for flexible neuromorphic devices lies in functional impairment arising from mechanical damage. Here, earthworm-inspired self-revival iontronic neuromorphic devices are fabricated with a decentralized architecture by polymer ion gel as an ion transport network. In the integrated device, a discrete hemispheric array structure is engineered to arrest crack propagation by physical isolation. Furthermore, the devices exhibit self-revival capacity after damage due to the rapidly-formed dynamic chemical bonds and transferable properties of independent hemispheric units. Notably, the iontronic neuromorphic devices are applied for the motion-cognition nerve system, achieving a human body movement tracking accuracy rate of 98%. Even when damaged, the system maintains a 96% tracking accuracy rate after self-revival. This work contributes to the design of novel neuromorphic devices and demonstrates significant potential for revolutionizing fields such as prosthetics, rehabilitation, and interactive robotics.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69ba43694e9516ffd37a4a84https://doi.org/10.1038/s41528-026-00566-0
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