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通过深度学习实现基于 TPU/MXene/二硫化钨纤维的高效制备及其在人体呼吸模式识别和疾病诊断中的超快响应

Efficient Fabrication of TPU/MXene/Tungsten Disulfide Fibers with Ultra-Fast Response for Human Respiratory Pattern Recognition and Disease Diagnosis via Deep Learning.

机构信息

College of Control Science and Engineering, China University of Petroleum (East China), Qingdao 266580, China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 9;15(31):37946-37956. doi: 10.1021/acsami.3c07589. Epub 2023 Jul 31.

Abstract

Flexible wearable pressure sensors have received increasing attention as the potential application of flexible wearable devices in human health monitoring and artificial intelligence. However, the complex and expensive process of the conductive filler has limited its practical production and application on a large scale to a certain extent. This study presents a kind of piezoresistive sensor by sinking nonwoven fabrics (NWFs) into tungsten disulfide (WS) and TiCT MXene solutions. With the advantages of a simple production process and practicality, it is conducive to the realization of large-scale production. The assembled flexible pressure sensor exhibits high sensitivity (45.81 kPa), wide detection range (0-410 kPa), fast response/recovery time (18/36 ms), and excellent stability and long-term durability (up to 5000 test cycles). Because of the high elastic modulus of MXene and the synergistic effect between WS and MXene, the detection range and sensitivity of the piezoresistive pressure sensor are greatly improved, realizing the stable detection of human motion status in all directions. Meanwhile, its high sensitivity at low pressure allows the sensor to accurately detect weak signals such as weak airflow and wrist pulses. In addition, combining the sensor with deep-learning makes it easy to recognize human respiratory patterns with high accuracy, demonstrating its potential impact in the fields of ergonomics and low-cost flexible electronics.

摘要

可伸缩可穿戴压力传感器作为可伸缩可穿戴设备在人体健康监测和人工智能中的潜在应用受到了越来越多的关注。然而,导电填料复杂且昂贵的工艺在一定程度上限制了其在大规模实际生产和应用中的发展。本研究提出了一种通过将无纺纤维(NWFs)沉入二硫化钨(WS)和 TiCT MXene 溶液中的压阻式传感器。该传感器具有生产工艺简单、实用性强的优点,有利于实现大规模生产。组装好的柔性压力传感器具有高灵敏度(45.81 kPa)、宽检测范围(0-410 kPa)、快速响应/恢复时间(18/36 ms)和出色的稳定性和长期耐用性(高达 5000 次测试循环)。由于 MXene 的弹性模量较高,WS 和 MXene 之间存在协同效应,压阻式压力传感器的检测范围和灵敏度得到了极大提高,可以稳定地检测各个方向的人体运动状态。同时,其在低压力下的高灵敏度使得传感器能够准确地检测到微弱的气流和手腕脉搏等微弱信号。此外,将传感器与深度学习相结合,使其能够以高精度识别人体呼吸模式,这表明它在人体工程学和低成本柔性电子领域具有潜在的影响。

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