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基于超拉伸、高透明、自粘性、环境耐受的壳聚糖纳米晶工程共晶水凝胶的多信号传感器。

Ultrahigh Stretchable, Highly Transparent, Self-Adhesive, and Environment-Tolerant Chitin Nanocrystals Engineered Eutectogels toward Multisignal Sensors.

机构信息

College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, P. R. China.

The Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University, Chengdu 610065, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45537-45549. doi: 10.1021/acsami.4c09589. Epub 2024 Aug 13.

DOI:10.1021/acsami.4c09589
PMID:39138982
Abstract

Addressing the conflict between achieving elevated mechanical stretchability and environmental adaptability is significant to a breakthrough in the practical application of flexible wearable materials. Therefore, inspired by the perceptive and protective properties of human skin, flexible wearable electronic skins (E-skins) based on deep eutectic solvent (DES) liquid and multiresponse eutectogel have been widely considered to be a promising platform for building a flexible wearable management system to achieve the purpose of "one stone, two birds". In this work, a multifunctional E-skin was designed based on an ultrastretchable, transparent, self-adhesive, and environmentally tolerant eutectogel by first incorporating cationized modified chitin nanocrystals into a covalently cross-linked polymer network comprised of the skeleton formed by a PAA polymerization network structure serving as a stretchable matrix and filled with DESs (ChCl:EG). The obtained eutectogel exhibits superhigh stretchability (up to 6707%), high toughness (17.7 MJ/m), mechanical strength (0.48 MPa), self-adhesive, and high transparency (91.2%). Simultaneously, the multisignal sensor based on the above comprehensive properties and thermosensitive capacity exhibits a wide monitoring range, high strain/compression/temperature sensitivity, and good reproducibility. Remarkably, the sensor could be attached to rat hearts without glue or stickers for long-term monitoring of high-quality in vivo heartbeat signals. In this way, it is believed that the designed E-skin system based on eutectogel has great potential to serve as a promising platform for the next generation of flexible multisignal monitoring integrated wearable management systems.

摘要

解决提高机械拉伸性和环境适应性之间的冲突对于突破柔性可穿戴材料的实际应用具有重要意义。因此,受人类皮肤感知和保护特性的启发,基于深共晶溶剂 (DES) 液体和多响应共晶凝胶的柔性可穿戴电子皮肤 (E-skin) 被广泛认为是构建柔性可穿戴管理系统的有前途的平台,以实现“一石二鸟”的目的。在这项工作中,通过首先将阳离子化改性壳聚糖纳米晶体掺入由 PAA 聚合网络结构骨架形成的共价交联聚合物网络中,设计了一种多功能 E-skin,该网络结构骨架作为可拉伸基质,并填充 DES(氯化胆碱:乙二醇)。所得共晶凝胶表现出超高的拉伸性(高达 6707%)、高韧性(17.7MJ/m)、机械强度(0.48MPa)、自粘性和高透明度(91.2%)。同时,基于上述综合性能和热敏性的多信号传感器表现出宽监测范围、高应变/压缩/温度灵敏度和良好的重现性。值得注意的是,该传感器可以不使用胶水或贴纸粘贴在老鼠心脏上,用于长期监测高质量的体内心跳信号。通过这种方式,相信基于共晶凝胶的设计的 E-skin 系统具有很大的潜力,可以作为下一代柔性多信号监测集成可穿戴管理系统的有前途的平台。

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