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基于中穹顶和微柱阵列的混合结构作为具有可调灵敏度和检测范围的柔性电子皮肤的简便制备方法。

Facile Preparation of Hybrid Structure Based on Mesodome and Micropillar Arrays as Flexible Electronic Skin with Tunable Sensitivity and Detection Range.

作者信息

Ji Bing, Mao Yongyun, Zhou Qian, Zhou Jianhe, Chen Ge, Gao Yibo, Tian Yanqing, Wen Weijia, Zhou Bingpu

机构信息

Department of Materials Science and Engineering , Southern University of Science and Technology , No. 1088, Xueyuan Road, Xili, Nanshan District , Shenzhen , Guangdong 518055 , China.

Spinal Joint Surgery , Kanghua Hospital , Dongguan , Guangdong 523000 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 7;11(31):28060-28071. doi: 10.1021/acsami.9b08419. Epub 2019 Jul 25.

Abstract

The development of flexible pressure sensors has attracted increasing research interest for potential applications such as wearable electronic skins and human healthcare monitoring. Herein, we demonstrated a piezoresistive pressure sensor based on AgNWs-coated hybrid architecture consisting of mesoscaled dome and microscaled pillar arrays. We experimentally showed that the key three-dimensional component for a pressure sensor can be conveniently acquired using a vacuum application during the spin-coating process instead of a sophisticated and expensive approach. The demonstrated hybrid structure exhibits dramatically improved sensing capability when compared with the conventional one-fold dome-based counterpart in terms of the sensitivity and detectable pressure range. The optimized sensing performance, by integrating D1000 dome and D50P100 MPA, reaches a superior sensitivity of 128.29 kPa (0-200 Pa), 1.28 kPa (0.2-10 kPa), and 0.26 kPa (10-80 kPa) and a detection limit of 2.5 Pa with excellent durability. As a proof-of-concept, the pressure sensor based on the hybrid configuration was demonstrated as a versatile platform to accurately monitor different kinds of physical signals or pressure sources, e.g., wrist pulse, voice vibration, finger bending/touching, gas flow, as well as address spatial loading. We believe that the proposed architecture and developed methodology can be promising for future applications including flexible electronic devices, artificial skins, and interactive robotics.

摘要

柔性压力传感器的发展因其在可穿戴电子皮肤和人体健康监测等潜在应用方面而吸引了越来越多的研究兴趣。在此,我们展示了一种基于由介观圆顶和微观柱状阵列组成的涂覆有银纳米线的混合结构的压阻式压力传感器。我们通过实验表明,压力传感器的关键三维组件可以在旋涂过程中使用真空应用方便地获得,而无需采用复杂且昂贵的方法。与传统的基于单圆顶的同类产品相比,所展示的混合结构在灵敏度和可检测压力范围方面表现出显著提高的传感能力。通过集成D1000圆顶和D50P100 MPA实现的优化传感性能,在0 - 200 Pa范围内灵敏度达到128.29 kPa,在0.2 - 10 kPa范围内为1.28 kPa,在10 - 80 kPa范围内为0.26 kPa,检测限为2.5 Pa,且具有出色的耐久性。作为概念验证,基于混合配置的压力传感器被证明是一个通用平台,可准确监测不同类型的物理信号或压力源,例如手腕脉搏、语音振动、手指弯曲/触摸、气流以及解决空间载荷问题。我们相信,所提出的架构和开发的方法对于包括柔性电子设备、人造皮肤和交互式机器人在内的未来应用具有广阔前景。

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