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基于具有卓越导电性和耐久性的聚多巴胺修饰超弹性纤维的电子皮肤。

Electronic Skin Based on Polydopamine-Modified Superelastic Fibers with Superior Conductivity and Durability.

作者信息

Chen Chengfeng, Wang Yimiao, Wang Hang, Wang Xinqing, Tian Mingwei

机构信息

Intelligent Wearable Engineering Research Center of Qingdao, College of Textiles and Clothing, Qingdao University, Qingdao 266071, China.

Shandong Special Nonwoven Materials Engineering Research Center, Qingdao University, Qingdao 266071, China.

出版信息

Nanomaterials (Basel). 2024 Feb 28;14(5):438. doi: 10.3390/nano14050438.

Abstract

Owing to their excellent elasticities and adaptability as sensing materials, ionic hydrogels exhibit significant promise in the field of intelligent wearable devices. Nonetheless, molecular chains within the polymer network of hydrogels are susceptible to damage, leading to crack extension. Hence, we drew inspiration from the composite structure of the human dermis to engineer a composite hydrogel, incorporating dopamine-modified elastic fibers as a reinforcement. This approach mitigates crack expansion and augments sensor sensitivity by fostering intermolecular forces between the dopamine on the fibers, the hydrogel backbone, and water molecules. The design of this composite hydrogel elevates its breaking tensile capacity from 35 KJ to 203 KJ, significantly enhancing the fatigue resistance of the hydrogel. Remarkably, its electrical properties endure stability even after 2000 cycles of testing, and it manifests heightened sensitivity compared to conventional hydrogel configurations. This investigation unveils a novel method for crafting composite-structured hydrogels.

摘要

由于离子水凝胶作为传感材料具有出色的弹性和适应性,它们在智能可穿戴设备领域展现出巨大的潜力。尽管如此,水凝胶聚合物网络中的分子链容易受到破坏,导致裂纹扩展。因此,我们从人类真皮的复合结构中获得灵感,设计了一种复合水凝胶,将多巴胺修饰的弹性纤维作为增强材料。这种方法通过促进纤维上的多巴胺、水凝胶主链和水分子之间的分子间力来减轻裂纹扩展并提高传感器灵敏度。这种复合水凝胶的设计将其断裂拉伸能力从35千焦提高到203千焦,显著增强了水凝胶的抗疲劳性。值得注意的是,即使经过2000次测试循环,其电学性能仍保持稳定,并且与传统水凝胶结构相比,它表现出更高的灵敏度。这项研究揭示了一种制备复合结构水凝胶的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b18f/10934599/1986c6d931af/nanomaterials-14-00438-g001.jpg

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