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无溶剂、低成本制备高性能纳米复合传感器用于记录电生理信号。

Solvent-Free and Cost-Efficient Fabrication of a High-Performance Nanocomposite Sensor for Recording of Electrophysiological Signals.

机构信息

Department of Electrical and Computer Engineering, Queen's University, Kingston, ON K7L 3N6, Canada.

Centre for Neuroscience Studies, Queen's University, Kingston, ON K7L 3N6, Canada.

出版信息

Biosensors (Basel). 2024 Apr 11;14(4):188. doi: 10.3390/bios14040188.

Abstract

Carbon nanotube (CNT)-based nanocomposites have found applications in making sensors for various types of physiological sensing. However, the sensors' fabrication process is usually complex, multistep, and requires longtime mixing and hazardous solvents that can be harmful to the environment. Here, we report a flexible dry silver (Ag)/CNT/polydimethylsiloxane (PDMS) nanocomposite-based sensor made by a solvent-free, low-temperature, time-effective, and simple approach for electrophysiological recording. By mechanical compression and thermal treatment of Ag/CNT, a connected conductive network of the fillers was formed, after which the PDMS was added as a polymer matrix. The CNTs make a continuous network for electrons transport, endowing the nanocomposite with high electrical conductivity, mechanical strength, and durability. This process is solvent-free and does not require a high temperature or complex mixing procedure. The sensor shows high flexibility and good conductivity. High-quality electroencephalography (EEG) and electrooculography (EOG) were performed using fabricated dry sensors. Our results show that the Ag/CNT/PDMS sensor has comparable skin-sensor interface impedance with commercial Ag/AgCl-coated dry electrodes, better performance for noninvasive electrophysiological signal recording, and a higher signal-to-noise ratio (SNR) even after 8 months of storage. The SNR of electrophysiological signal recording was measured to be 26.83 dB for our developed sensors versus 25.23 dB for commercial Ag/AgCl-coated dry electrodes. Our process of compress-heating the functional fillers provides a universal approach to fabricate various types of nanocomposites with different nanofillers and desired electrical and mechanical properties.

摘要

基于碳纳米管(CNT)的纳米复合材料已在制造各种类型生理感应传感器方面得到应用。然而,传感器的制造工艺通常复杂、多步骤,需要长时间混合和使用危险溶剂,这可能对环境有害。在这里,我们报告了一种由无溶剂、低温、高效、简单的方法制备的基于柔性干燥银(Ag)/CNT/聚二甲基硅氧烷(PDMS)纳米复合材料的传感器,用于电生理记录。通过 Ag/CNT 的机械压缩和热处理,形成了填充剂的连通导电网络,然后加入 PDMS 作为聚合物基质。CNT 形成了电子传输的连续网络,使纳米复合材料具有高导电性、机械强度和耐用性。这个过程是无溶剂的,不需要高温或复杂的混合程序。传感器具有高柔韧性和良好的导电性。使用制造的干传感器进行了高质量的脑电图(EEG)和眼电图(EOG)。我们的结果表明,Ag/CNT/PDMS 传感器与商用 Ag/AgCl 涂层干电极具有可比的皮肤-传感器界面阻抗,对非侵入性电生理信号记录具有更好的性能,并且即使在 8 个月的储存后,信噪比(SNR)也更高。电生理信号记录的 SNR 被测量为我们开发的传感器为 26.83 dB,而商用 Ag/AgCl 涂层干电极的 SNR 为 25.23 dB。我们的压缩-加热功能填充剂的方法为制造具有不同纳米填充剂和所需的电气和机械性能的各种类型的纳米复合材料提供了一种通用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d857/11048393/434136040f0f/biosensors-14-00188-g001.jpg

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