丝瓜纤维织物基宽线性范围高灵敏度压阻压力传感器。

IF 12.1 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Small Pub Date : 2025-07-17 DOI:10.1002/smll.202506521
Chenxi Lu, Yiming Shen, Xiaoao Chan, Senjiang Yu, Liang Hu, Lingwei Li
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引用次数: 0

摘要

柔性压力传感器是人工触觉感知中不可缺少的组成部分,但同时具备高灵敏度和宽线性响应范围仍然是一个巨大的挑战。本文设计了一种由丝瓜纤维制成的植物织物,它具有优异的机械性能和复杂的分层多孔结构,取代传统的软质材料作为传感层基质,在提高结构可压缩性的同时,在增加压力的情况下提供足够的导电路径。因此,基于丝瓜纤维织物(LFF)的压阻式压力传感器在宽压力范围(140 kPa)内具有高灵敏度(30.8 kPa-1)和良好的线性度(R2 = 0.990),从而实现超低检测限(0.15 Pa)和超高压力分辨率(0.071%)。此外,基于lff的压阻式压力传感器在手指脉搏和面部肌肉的健康监测、表情识别和多功能区控制方面表现出卓越的性能。此外,丝瓜络纤维是一种低成本和丰富的天然材料。其他具有优异力学性能和分层多孔结构的生物材料也可能是要求宽线性范围高灵敏度的触觉传感器的合适选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Loofah Fiber Fabric-Based Piezoresistive Pressure Sensor with Wide-Linear-Range High Sensitivity

Flexible pressure sensors are indispensable components of artificial tactile perception, whereas it remains a great challenge to possess high sensitivity and a wide linear response range simultaneously. Here, a plant fabric made of loofah fibers with excellent mechanical properties and intricate hierarchical porous structures is designed to replace the conventional soft materials as the sensing layer matrix, promoting structural compressibility while simultaneously providing enough conductive path with increasing pressure. Therefore, the loofah fiber fabric (LFF)-based piezoresistive pressure sensor exhibits high sensitivity (30.8 kPa−1) and excellent linearity (R2 = 0.990) over a wide pressure range (140 kPa), leading to an ultralow limit of detection (0.15 Pa) and ultrahigh pressure resolution (0.071%). Additionally, the LFF-based piezoresistive pressure sensor exhibits remarkable performance in the health monitoring of finger pulse and facial muscles, expression recognition, and multifunctional zone control. Furthermore, the loofah fiber is a low-cost and abundantly available natural material. Other biomaterials with excellent mechanical properties and hierarchical porous structures may also be suitable choices for tactile sensors calling for wide-linear-range high sensitivity.

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来源期刊
Small
Small 工程技术-材料科学:综合
CiteScore
17.70
自引率
3.80%
发文量
1830
审稿时长
2.1 months
期刊介绍: Small serves as an exceptional platform for both experimental and theoretical studies in fundamental and applied interdisciplinary research at the nano- and microscale. The journal offers a compelling mix of peer-reviewed Research Articles, Reviews, Perspectives, and Comments. With a remarkable 2022 Journal Impact Factor of 13.3 (Journal Citation Reports from Clarivate Analytics, 2023), Small remains among the top multidisciplinary journals, covering a wide range of topics at the interface of materials science, chemistry, physics, engineering, medicine, and biology. Small's readership includes biochemists, biologists, biomedical scientists, chemists, engineers, information technologists, materials scientists, physicists, and theoreticians alike.
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