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Multifunctional layer-by-layer carbon nanotube-polyelectrolyte thin films for strain and corrosion sensing

机译:用于应变和腐蚀感应的多功能逐层碳纳米管-聚电解质薄膜

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摘要

Since the discovery of carbon nanotubes, researchers have been fascinated by their mechanical and electrical properties, as well as their versatility for a wide array of applications. In this study, a carbon nanotube-polyelectrolyte composite multilayer thin film fabricated by a layer-by-layer (LbL) method is proposed to develop a multifunctional material for measuring strain and corrosion processes. LbL fabrication of carbon nanotube composites yields mechanically strong thin films in which multiple sensing transduction mechanisms can be encoded. For example, judicious selection of carbon nanotube concentrations and polyelectrolyte matrices can yield thin films that exhibit changes in their electrical properties to strain and pH. In this study, experimental results suggest a consistent trend between carbon nanotube concentrations and strain sensor sensitivity. Furthermore, by simply altering the type of polyelectrolyte used, pH sensors of high sensitivity can be developed to potentially monitor environmental factors suggesting corrosion of metallic structural materials (e. g. steel, aluminum).
机译:自从发现碳纳米管以来,研究人员一直对它们的机械和电气特性以及它们在多种应用中的多功能性着迷。在这项研究中,提出了一种通过逐层(LbL)方法制造的碳纳米管-聚电解质复合多层薄膜,以开发用于测量应变和腐蚀过程的多功能材料。碳纳米管复合材料的LbL制造会产生机械强度高的薄膜,其中可以编码多种传感转导机制。例如,对碳纳米管浓度和聚电解质基质的明智选择可以产生薄膜,该薄膜表现出其电性质随应变和pH的变化。在这项研究中,实验结果表明碳纳米管浓度和应变传感器灵敏度之间的一致趋势。此外,通过简单地改变所使用的聚电解质的类型,可以开发高灵敏度的pH传感器以潜在地监视暗示金属结构材料(例如钢,铝)腐蚀的环境因素。

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