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用于水下探测的具有双尺度随机微结构薄膜的宽量程线性离子压力传感器。

Wide-Range Linear Iontronic Pressure Sensor with Two-Scale Random Microstructured Film for Underwater Detection.

作者信息

Wu Shaowei, Yang Chengxiu, Hu Jiafei, Pan Mengchun, Qiu Weicheng, Guo Yanrui, Sun Kun, Xu Yujing, Li Peisen, Peng Junping, Zhang Qi

机构信息

College of Intelligent Science, National University of Defense Technology, Changsha410073, China.

出版信息

ACS Omega. 2022 Nov 18;7(48):43923-43933. doi: 10.1021/acsomega.2c05186. eCollection 2022 Dec 6.

Abstract

A broad linear range of ionic flexible sensors (IFSs) with high sensitivity is vital to guarantee accurate pressure acquisition and simplify back-end circuits. However, the issue that sensitivity gradually decreases as the applied pressure increases hinders the linearity over the whole working range and limits its wide-ranging application. Herein, we design a two-scale random microstructure ionic gel film with rich porosity and a rough surface. It increases the buffer space during compression, enabling the stress deformation to be more uniform, which makes sure that the sensitivity maintains steady as the pressure loading. In addition, we develop electrodes with multilayer graphene produced by a roll-to-roll process, utilizing its large interlayer spacing and ion-accessible surface area. It benefits the migration and diffusion of ions inside the electrolyte, which increases the unit area capacitance and sensitivity, respectively. The IFS shows ultra-high linearity and a linear range (correlation coefficient ∼ 0.9931) over 0-1 MPa, an excellent sensitivity (∼12.8 kPa), a fast response and relaxation time (∼20 and ∼30 ms, respectively), a low detection limit (∼2.5 Pa), and outstanding mechanical stability. This work offers an available path to achieve wide-range linear response, which has potential applications for attaching to soft robots, followed with sensing slight disturbances induced by ships or submersibles.

摘要

具有高灵敏度的宽线性范围离子柔性传感器(IFS)对于保证准确的压力采集和简化后端电路至关重要。然而,随着施加压力增加灵敏度逐渐降低这一问题阻碍了整个工作范围内的线性度,并限制了其广泛应用。在此,我们设计了一种具有丰富孔隙率和粗糙表面的双尺度随机微结构离子凝胶膜。它增加了压缩过程中的缓冲空间,使应力变形更加均匀,从而确保随着压力加载灵敏度保持稳定。此外,我们开发了通过卷对卷工艺制备的具有多层石墨烯的电极,利用其较大的层间距和离子可及表面积。这有利于电解质内部离子的迁移和扩散,分别增加了单位面积电容和灵敏度。该IFS在0 - 1 MPa范围内显示出超高线性度和线性范围(相关系数约为0.9931)、优异的灵敏度(约12.8 kPa)、快速的响应和弛豫时间(分别约为20和30 ms)、低检测限(约2.5 Pa)以及出色的机械稳定性。这项工作为实现宽范围线性响应提供了一条可行途径,在附着于软机器人方面具有潜在应用,随后可用于感知船舶或潜水器引起的轻微干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/554c/9730760/6ef48caf6098/ao2c05186_0002.jpg

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