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April 26, 2026Journal of Materials Chemistry C0 citations

Trehalose-enhanced Anti-Freezing Conductive Hydrogels with High Stretchability and Low Hysteresis for Flexible Human-Machine Interaction

JLJingye LiangXSXiya ShanHYHanbing Yu

Key Points

  • The aim is to improve the performance of conductive hydrogels for flexible applications in human-machine interaction.
  • Developed conductive hydrogels enhanced with trehalose.
  • Measured stretchability and hysteresis in fabricated samples.
  • Evaluated ionic conductivity and mechanical properties.
  • Trehalose-enhanced hydrogels exhibited significantly higher stretchability.
  • Measured hysteresis was lower compared to standard hydrogels.
  • Ionic conductivity improved, indicating better performance for flexible sensors.

Abstract

Conductive hydrogels are regarded as highly promising flexible sensing matrix materials due to unique three-dimensional conductive network structure, high flexibility, tunable mechanical properties, and excellent ionic conductivity. However, the fabrication...

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/69edacbd4a46254e215b47b3https://doi.org/10.1039/d6tc00646a
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