Suppr超能文献

基于MXene/芳纶纳米纤维(ANF)气凝胶薄膜的坚固、灵活、疏水且多功能的压力传感器

A Robust, Flexible, Hydrophobic, and Multifunctional Pressure Sensor Based on an MXene/Aramid Nanofiber (ANF) Aerogel Film.

作者信息

Yang Bin, Wang Lin, Zhao Junfan, Pang Ruixue, Yuan Baolong, Tan Jiaojun, Song Shunxi, Nie Jingyi, Zhang Meiyun

机构信息

College of Bioresources Chemical and Materials Engineering, National Demonstration Center for Experimental Light Chemistry Engineering Education, Shaanxi Province Key Laboratory of papermaking Technology and Specialty paper Development, Shaanxi University of Science & Technology, No. 6, Xuefu Road, Xi'an 710021, China.

出版信息

ACS Appl Mater Interfaces. 2022 Oct 19;14(41):47075-47088. doi: 10.1021/acsami.2c14094. Epub 2022 Oct 7.

Abstract

Pressure sensors with desirable flexibility, robustness, and versatility are urgently needed for complicated smart wearable devices. However, developing an ideal multifunctional flexible sensor is still challenging. In this work, a composite aerogel film sensor with an internal three-dimensional (3D) microporous and hierarchical structure is successfully fabricated by the self-assembly of aramid nanofiber (ANF) and conductive MXene by vacuum-assisted filtration and ice crystal growth. The resultant MXene/ANF aerogel film with a mass ratio of 3/7 (30% MAAF) presents high robustness with an outstanding tensile strength of 14.1 MPa and a modulus of 455 MPa while retaining appealing flexibility and sensitive characteristics due to the 3D microstructure. Accompanied by superior electric conductivity, the MAAF sensor performs noticeably in human motion and microexpression detection with a fast response time of 100 ms and a high sensitivity of 37.4 kPa. In addition, MAAF exhibits considerable thermal shielding performance based on the excellent thermostability. Moreover, it possesses prominent electrothermal property with a wide heating temperature range (32.7-242 °C) in a fast thermal response time (5 s) due to the Joule effect. Additionally, a hydrophobic SiO coating is introduced on the surface of MAAF to further broaden the sensing application, and the obtained MAAF@SiO sensor shows distinguished sensing capability underwater, which can be accurately applied to swimming monitoring. Therefore, this work provides a highly flexible, lightweight, robust, and multifunctional aerogel film sensor, showing promising potential in smart wearable sensing and healthcare devices, intelligent robots, and underwater detection.

摘要

对于复杂的智能可穿戴设备而言,迫切需要具备理想柔韧性、坚固性和多功能性的压力传感器。然而,开发一种理想的多功能柔性传感器仍然具有挑战性。在这项工作中,通过芳纶纳米纤维(ANF)和导电MXene的自组装,利用真空辅助过滤和冰晶生长成功制备了一种具有内部三维(3D)微孔和分级结构的复合气凝胶薄膜传感器。所得质量比为3/7(30% MAAF)的MXene/ANF气凝胶薄膜具有高坚固性,其拉伸强度高达14.1 MPa,模量为455 MPa,同时由于其3D微观结构而保留了吸引人的柔韧性和敏感特性。伴随着优异的导电性,MAAF传感器在人体运动和微表情检测中表现出色,响应时间快至100 ms,灵敏度高达37.4 kPa。此外,基于出色的热稳定性,MAAF具有相当可观的热屏蔽性能。而且,由于焦耳效应,它在快速热响应时间(5 s)内具有宽加热温度范围(32.7 - 242 °C)的突出电热性能。此外,在MAAF表面引入了疏水性SiO涂层以进一步拓宽传感应用,所获得的MAAF@SiO传感器在水下显示出卓越的传感能力,可准确应用于游泳监测。因此,这项工作提供了一种高度柔性、轻质、坚固且多功能的气凝胶薄膜传感器,在智能可穿戴传感和医疗保健设备、智能机器人以及水下检测方面显示出广阔的应用潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验