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Spatial conductivity mapping of carbon nanotube composite thin films by electrical impedance tomography for sensing applications

机译:碳纳米管复合薄膜的电阻率层析成像技术在空间传感中的应用

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摘要

This paper describes the application of electrical impedance tomography (EIT) to demonstrate the multifunctionality of carbon nanocomposite thin films under various types of environmental stimuli. Carbon nanotube (CNT) thin films are fabricated by a layer-by-layer (LbL) technique and mounted with electrodes along their boundaries. The response of the thin films to various stimuli is investigated by relying on electric current excitation and corresponding boundary potential measurements. The spatial conductivity variations are reconstructed based on a mathematical model for the EIT technique. Here, the ability of the EIT method to provide two-dimensional mapping of the conductivity of CNT thin films is validated by (1) electrically imaging intentional structural defects in the thin films and (2) mapping the film's response to various pH environments. The ability to spatially image the conductivity of CNT thin films holds many promises for developing multifunctional CNT-based sensing skins.
机译:本文介绍了电阻抗层析成像(EIT)的应用,以证明在各种类型的环境刺激下碳纳米复合薄膜的多功能性。碳纳米管(CNT)薄膜是通过逐层(LbL)技术制造的,并沿其边界安装有电极。依靠电流激励和相应的边界电势测量来研究薄膜对各种刺激的响应。空间电导率变化是基于EIT技术的数学模型重建的。在此,EIT方法提供CNT薄膜电导率的二维映射的能力通过(1)对薄膜中的故意结构缺陷进行电子成像以及(2)映射薄膜对各种pH环境的响应来验证。对CNT薄膜的电导率进行空间成像的能力为开发多功能的,基于CNT的传感皮肤带来了许多希望。

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