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April 23, 2026FlexMat.0 citationsOpen Access

Composite materials based on dual network cross‐linking for flexible sensors

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XWX F WangHZHongxin ZhuYFYu Feng

Key Points

  • This research aims to develop flexible ionic materials that avoid evaporation and leakage while enhancing performance through dual network cross-linking.
  • Creation of composite ionic materials with dual network using hydrogen and lithium bonding
  • Evaluation of mechanical properties and conductivity
  • Development of a resistive flexible sensor using the new composite materials
  • Composite flexible ionic materials showed exceptional conductivity and mechanical strength
  • The materials exhibited rapid self-healing capabilities
  • Applications in human-computer interaction and medical health were identified as promising.

Abstract

Abstract The further development of flexible ionic materials is limited by the evaporation or leakage of their internal liquid state. This article presents a composite flexible ionic material with no internal liquid, which forms a double crosslinked network through hydrogen bonding and lithium bonding, avoiding leakage and evaporation. Composite flexible ionic materials exhibit excellent conductivity, mechanical properties, and transparency. The synergistic effect of hydrogen bonding and lithium bonding endows composite flexible ionic materials with rapid self‐healing properties. On this basis, a resistive flexible sensor based on composite flexible ion materials was further developed. It has broad application prospects in human‐computer interaction, electronic skin, and medical health fields.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e9b80e85696592c86eb753https://doi.org/10.1002/flm2.70066
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