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Electrical impedance tomography of carbon nanotube composite materials

机译:碳纳米管复合材料的电阻抗层析成像

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摘要

The field of nanotechnology is rapidly maturing into a fertile and interdisciplinary research area from which new sensor and actuator technologies can be conceived. The tools and processes derived from the nanotechnology field have offered engineers the opportunity to design materials in which sensing transduction mechanisms can be intentionally encoded. For example, single- and multi-walled carbon nanotubes embedded within polyelectrolyte thin films have been proposed for strain and pH sensing. While the electromechanical and electrochemical response of carbon nanotube composites can be experimentally characterized, there still lacks a fundamental understanding of how the conductivity of carbon nanotube composites is spatially distributed and how it depends on external stimuli. In this study, electrical impedance tomography is proposed for spatial characterization of the conductivity of carbon nanotube composite thin films. The method proves promising for both assessment of as-fabricated thin film quality as well as for two-dimensional sensing of thin film response to mechanical strain and exposure to pH environments.
机译:纳米技术领域正在迅速发展成为一个肥沃的跨学科研究领域,从中可以构想出新的传感器和执行器技术。源自纳米技术领域的工具和过程为工程师提供了设计材料的机会,在这些材料中可以有意地编码传感转导机制。例如,已经提出了嵌入在聚电解质薄膜中的单壁和多壁碳纳米管用于应变和pH传感。尽管可以通过实验方法表征碳纳米管复合材料的机电和电化学响应,但仍缺乏对碳纳米管复合材料的电导率如何在空间上分布以及它如何依赖外部刺激的基本了解。在这项研究中,提出了电阻抗层析成像技术,用于表征碳纳米管复合薄膜的电导率。该方法被证明对于评估人造薄膜的质量以及对薄膜对机械应变和暴露于pH环境的响应进行二维传感都是很有希望的。

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