韧性
材料科学
复合材料
离子键合
胶粘剂
模数
明胶
离子液体
弹性模量
稳健性(进化)
智能材料
色散(光学)
软质材料
纳米技术
动态力学分析
电解质
杨氏模量
使用寿命
分层(地质)
作者
Yuxuan Qiao,Ping He,Muqing Si,Linfang Zhu,Xiaojiao Shi,Na Li,Aihong Su,Zhihui Qin,Tifeng Jiao,Ximin He
出处
期刊:
日期:2026-07-22
卷期号:2 (1)
标识
DOI:10.1038/s44431-026-00032-x
摘要
With the rapid advancement of wearable ionic skin, there is an increasing demand for multifunctional ionic-conductive soft materials capable of maintaining stable contact with human skin while withstanding deformation, damage, and fluctuating environmental conditions. However, achieving skin-like softness and toughness, robust adhesion, and rapid self-healing capacity in one material remains a significant challenge, as enhancing mechanical robustness often compromises the critical network dynamics necessary for interfacial adaptability and self-healing. Here, we introduce a physically cross-linked double-network eutectogel, composed of interpenetrating gelatin and poly (2-hydroxyethyl acrylate) (PHEA) networks, using choline chloride:glycerol (ChCl:Gly) as the dispersion medium. Due to abundant noncovalent interactions among gelatin chains, PHEA chains, and ChCl:Gly, the resulting eutectogel demonstrates skin-like softness (elastic modulus ≈12 kPa), high stretchability (>630%), and notable toughness (194 kJ/m 3 ). Notably, our eutectogel also exhibits excellent environmental stability, rapid self-healing ability within 5 mins and strong interfacial adhesion, ensuring robust and conformal contact with human skins with long-term stability and extended service life. Therefore, this eutectogel can function as a reliable ionic skin, capable of achieving high-precision strain and temperature sensing, as well as electrophysiological signal acquisition (ECG and EMG), showing great potential applications for multimodal ionic skins in complex environments.
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