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用于多模态应变传感和有机蒸汽检测的弹性体传感器-摩擦纳米发电机耦合系统

Elastomeric Sensor-Triboelectric Nanogenerator Coupled System for Multimodal Strain Sensing and Organic Vapor Detection.

作者信息

Kundu Arpita, Arief Injamamul, Mandal Subhradeep, Meena Kamal Kumar, Krause Beate, Staudinger Ulrike, Mondal Titash, Wießner Sven, Das Amit

机构信息

Leibniz-Institut für Polymerforschung Dresden e. V., Hohe Straße 6, Dresden D-01069, Germany.

TUD Dresden University of Technology, Institute of Materials Science, Helmholtzstraße 7a, Dresden D-01069, Germany.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 2;16(39):53083-53097. doi: 10.1021/acsami.4c14011. Epub 2024 Sep 23.

Abstract

Stretchable, flexible sensors are one of the most critical components of smart wearable electronics and Internet of Things (IoT), thereby attracting multipronged research interest in the last decades. Following miniaturization and multicomponent development of several sensors in one could further propel the demand for wireless, multimodal platforms. Greener substitutes to conventional sensors that can operate in a self-powered configuration are highly desirable in terms of all-in-one sensor utilities. However, fabrication of composite-based ultrastretchable, self-powered sensors with multifunctionality, robustness, and conformability is still only partially achieved and, therefore, demands further investigation. In this work, we report a triboelectric nanogenerator (TENG)-based multifunctional strain and organic vapor sensor using cross-linked ethylene propylene diene monomer (EPDM) elastomer and conducting carbon black as active fillers in the presence of an ionic liquid. The resulting piezoresistive sensor demonstrates ultrahigh gauge factor (GF > 220k) and wide range strain sensitivity and is, therefore, suitable for subtle-to-high frequency motion detection devices. Supported by excellent triboelectric outputs (force sensitivity 0.5 V/N in the range of 50-300 N, maximum output voltage ∼ 178 V, short circuit current ∼ 18 μA, maximum power density 0.11 mW/cm), the hybrid sensors offer remarkable mechanical toughness and seamless voltage generation under contact-separation, even after several thousand cycles of operations. Furthermore, the sensor substrates exhibited reproducible organic vapor-sensing behavior, with high responsivity of 1.92 and 1 for ethanol and acetone, respectively, under flowing vapor conditions. This work lays a strong foundation for developing a truly multimodal, TENG-based, self-powered organic vapor and strain sensors.

摘要

可拉伸、柔性传感器是智能可穿戴电子产品和物联网(IoT)中最关键的组件之一,因此在过去几十年中吸引了多方面的研究兴趣。随着多种传感器的小型化和多组件一体化发展,可能会进一步推动对无线多模态平台的需求。就一体化传感器应用而言,非常需要能以自供电配置运行的传统传感器的绿色替代品。然而,具有多功能性、坚固性和贴合性的基于复合材料的超可拉伸自供电传感器的制造仍仅部分实现,因此需要进一步研究。在这项工作中,我们报告了一种基于摩擦纳米发电机(TENG)的多功能应变和有机蒸汽传感器,该传感器使用交联乙丙三元橡胶(EPDM)弹性体和导电炭黑作为活性填料,并存在离子液体。所得的压阻式传感器表现出超高的应变系数(GF>220k)和宽范围的应变灵敏度,因此适用于从细微到高频的运动检测设备。在出色的摩擦电输出(50 - 300 N范围内的力灵敏度为0.5 V/N,最大输出电压约为178 V,短路电流约为18 μA,最大功率密度为0.11 mW/cm)的支持下,这种混合传感器具有出色的机械韧性,并且在接触 - 分离操作下即使经过数千次循环也能无缝产生电压。此外,传感器基板表现出可重复的有机蒸汽传感行为,在流动蒸汽条件下,对乙醇和丙酮的响应率分别高达1.92和1。这项工作为开发真正的多模态、基于TENG的自供电有机蒸汽和应变传感器奠定了坚实的基础。

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