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银纳米线-聚氨酯柔性传感器的制备与应用

Preparation and Applications of Silver Nanowire-Polyurethane Flexible Sensor.

作者信息

Shan Jiangyin, Qian Jianhua, Lin Ling, Wei Mengrong, Xia Jingyue, Fu Lin

机构信息

Textile Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310020, China.

出版信息

Sensors (Basel). 2025 Aug 21;25(16):5191. doi: 10.3390/s25165191.

Abstract

To expand the application of silver nanowires (AgNWs) in the field of flexible sensors, this study developed a stretchable flexible sensor based on thermoplastic polyurethane (TPU). Initially, the TPU nanofiber membrane was prepared by electrospinning. Subsequently, high-aspect-ratio AgNWs were synthesized via a one-step polyol reduction method. The AgNWs with the optimal aspect ratio were selected for the conductive layer and spray-coated onto the surface of the TPU nanofiber membrane. Another layer of TPU nanofiber membrane was then laminated on top, resulting in a flexible thin-film sensor with a "sandwich" structure. Through morphological, chemical structure, and crystallinity analyses, the primary factors influencing AgNWs' growth were investigated. Performance tests revealed that the prepared AgNWs had an average length of approximately 130 μm, a diameter of about 80 nm, and an average aspect ratio exceeding 1500, with the highest being 1921. The obtained sensor exhibited a low initial resistance (26.7 Ω), high strain range (sensing, ε = 0-150%), high sensitivity (GF, over 19.21), fast response and recovery time (112 ms), and excellent conductivity (428 S/cm). Additionally, the sensor maintained stable resistance after 3000 stretching cycles at a strain range of 0-10%. The sensor could output stable and recognizable electrical signals, demonstrating significant potential for applications in motion monitoring, human-computer interaction, and healthcare fields.

摘要

为了拓展银纳米线(AgNWs)在柔性传感器领域的应用,本研究开发了一种基于热塑性聚氨酯(TPU)的可拉伸柔性传感器。首先,通过静电纺丝制备TPU纳米纤维膜。随后,采用一步多元醇还原法合成了高长径比的AgNWs。选择具有最佳长径比的AgNWs用于导电层,并喷涂在TPU纳米纤维膜表面。然后在顶部层压另一层TPU纳米纤维膜,得到具有“三明治”结构的柔性薄膜传感器。通过形态、化学结构和结晶度分析,研究了影响AgNWs生长的主要因素。性能测试表明,制备的AgNWs平均长度约为130μm,直径约为80nm,平均长径比超过1500,最高可达1921。所制备的传感器具有低初始电阻(26.7Ω)、高应变范围(传感,ε = 0 - 150%)、高灵敏度(GF,超过19.21)、快速响应和恢复时间(112ms)以及优异的导电性(428S/cm)。此外,该传感器在0 - 10%应变范围内经过3000次拉伸循环后仍保持稳定的电阻。该传感器能够输出稳定且可识别的电信号,在运动监测、人机交互和医疗保健领域具有显著的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fc8/12389865/00c98e6bf139/sensors-25-05191-g001.jpg

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