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November 19, 2025Science AdvancesOpen Access

High-strength and fracture-resistant ionogels via solvent-tailored interphase cohesion in nanofibrous composite networks

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Authors

HZHe ZhangWJWen-bin JiaMSMingze Sun

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Overview

Composite ionogels show mechanical strength of 65.4 MPa in chronic wound healing, indicating potential for soft robotics and wearable electronics.

Key Points

  • Composite ionogels achieve mechanical strength of 65.4 megapascals, demonstrating exceptional load-bearing capacity.
  • They are synthesized through solvent-tailored interphase cohesion, enhancing ionic conductivity and antibacterial properties.
  • Electrophysiological monitoring is facilitated by their antidrying and breathable design, ideal for wearable applications.
  • This innovative approach highlights potential uses in biocompatible materials and next-generation soft robotics.

Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/6924fed8c0ce034ddc35118dhttps://doi.org/10.1126/sciadv.aea6883
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  5. 5Superstrong Ionogel Enabled by Coacervation-Induced Nanofibril Assembly for Sustainable Moisture Energy Harvesting2024 · 13 citations