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用于高灵敏度可穿戴传感器的仿生导电增强、自修复和可再生丝素蛋白水凝胶

Bioinspired Conductivity-Enhanced, Self-Healing, and Renewable Silk Fibroin Hydrogel for Wearable Sensors with High Sensitivity.

作者信息

Cui Shijun, Li Yajuan, Xu Zhice, Yu Xudong

机构信息

Hebei Provincial Key Laboratory of Photoelectric Control on Surface and Interface, and College of Science, Hebei University of Science and Technology, Yuxiang Road 26, Shijiazhuang 050080, PR China.

出版信息

ACS Appl Mater Interfaces. 2025 Feb 5;17(5):8657-8669. doi: 10.1021/acsami.4c21099. Epub 2025 Jan 28.

Abstract

The development of silk fibroin-based hydrogels with excellent biocompatibility, aqueous processability, and facile controllability in structure is indeed an exciting advancement for biological research and strain sensor applications. However, silk fibroin-based hydrogel strain sensors that combine high conductivity, high stretchability, reusability, and high selectivity are still desired. Herein, we report a simple method for preparing double-network hydrogels including silk fibroin and poly(acrylic acid) sodium-polyacrylate (PAA-PAAS) networks. The conformation and aggregate of silk fibroin could be facilely tuned by both ions and pH resulting from the PAA-PAAS network. The optimized hydrogel exhibits intriguing properties, such as high conductivity (3.67 S/m) and transparency, high stretchability (1186%) with a tensile strength of 110 kPa, good adhesion properties, reversible compression, self-healing, and high sensitivity (GF = 10.71). This hydrogel strain sensor can detect large-scale and small human movements in real time, such as limb movements, heartbeats, and pulse. Additionally, its ability to adsorb water and recover effectiveness after losing water from air with 90% humidity along with the capability for low-temperature motion detection facilitated by ethylene glycol further enhance its practical utility. This work offers a novel and simple approach to design flexible bionic strain sensors.

摘要

开发具有优异生物相容性、水性可加工性和结构易于可控性的丝素蛋白基水凝胶,对于生物学研究和应变传感器应用而言,确实是一项令人兴奋的进展。然而,仍需要兼具高导电性、高拉伸性、可重复使用性和高选择性的丝素蛋白基水凝胶应变传感器。在此,我们报道了一种制备双网络水凝胶的简单方法,该水凝胶包含丝素蛋白和聚(丙烯酸钠)-聚丙烯酸钠(PAA-PAAS)网络。丝素蛋白的构象和聚集体可通过PAA-PAAS网络产生的离子和pH值轻松调节。优化后的水凝胶具有诸多引人关注的特性,如高导电性(3.67 S/m)和透明度、1186%的高拉伸性以及110 kPa的拉伸强度、良好的粘附性能、可逆压缩性、自愈性和高灵敏度(GF = 10.71)。这种水凝胶应变传感器能够实时检测大规模和小规模的人体运动,如肢体运动、心跳和脉搏。此外,它吸附水分以及在湿度为90%的空气中失水后恢复有效性的能力,连同乙二醇促进的低温运动检测能力,进一步提高了其实际应用价值。这项工作为设计柔性仿生应变传感器提供了一种新颖且简单的方法。

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