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具有细菌纤维素/碳纳米管的自拉伸纤维液体传感器,用于智能尿布。

Self-Stretchable Fiber Liquid Sensors Made with Bacterial Cellulose/Carbon Nanotubes for Smart Diapers.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, PR China.

College of Information Sciences and Technology, Donghua University, Shanghai 201620, PR China.

出版信息

ACS Appl Mater Interfaces. 2022 May 11;14(18):21319-21329. doi: 10.1021/acsami.2c00960. Epub 2022 Apr 26.

Abstract

Liquid sensors for detecting water and body fluids are crucial in daily water usage and health monitoring, but it is challenging to combine sensing performance with high tensile deformation and multifunctional applications. Here, a substrate-free, self-stretchable bacterial cellulose (BC)/carbon nanotube (CNT) helical fiber liquid sensor was prepared by the solution spinning and coiling process using BC as the water-sensitive matrix and CNTs as the active sensing materials. The BC/CNT (BCT) fiber sensor has a high stretch ratio of more than 1000% and a rapid response for a current change rate of 10% within 1 s, which is almost unaffected under washing and various stretching or knotting deformations. By combination of the BCT fiber, we can design smart diapers or water level detectors, which rapidly monitor the status of smart diapers or water level, and the monitoring result can be transferred on time through an alarm device or smartphone. In short, the scalable and continuous preparation of the self-stretchable BCT helical fiber will provide a capacious platform for the development of a wearable sensor applied in daily life (such as smart diapers, water level detection, etc.).

摘要

用于检测水和体液的液体传感器在日常用水和健康监测中至关重要,但将传感性能与高拉伸变形和多功能应用相结合具有挑战性。在这里,使用细菌纤维素 (BC) 作为水敏基质和碳纳米管 (CNT) 作为活性传感材料,通过溶液纺丝和卷绕工艺制备了无基底、自拉伸的细菌纤维素 (BC)/碳纳米管 (CNT) 螺旋纤维液体传感器。BC/CNT (BCT) 纤维传感器具有超过 1000%的高拉伸比和 1 s 内电流变化率为 10%的快速响应,在洗涤和各种拉伸或打结变形下几乎不受影响。通过 BCT 纤维的组合,我们可以设计智能尿布或水位探测器,它们可以快速监测智能尿布或水位的状态,并通过报警装置或智能手机及时传输监测结果。简而言之,可扩展和连续制备的自拉伸 BCT 螺旋纤维将为可穿戴传感器在日常生活中的应用(如智能尿布、水位检测等)提供广阔的平台。

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