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3D printed e-tongue

机译:3D打印电子舌

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Nowadays, one of the biggest issues addressed to electronic sensor fabrication is the build-up of efficient electrodes as an alternative way to the expensive, complex and multistage processes required by traditional techniques. Printed electronics arises as an interesting alternative to fulfill this task due to the simplicity and speed to stamp electrodes on various surfaces. Within this context, the Fused Deposition Modeling 3D printing is an emerging, cost-effective and alternative technology to fabricate complex structures that potentiates several fields with more creative ideas and new materials for a rapid prototyping of devices. We show here the fabrication of interdigitated electrodes using a standard home-made CoreXY 3D printer using transparent and graphene-based PLA filaments. Macro 3D printed electrodes were easily assembled within 6 minutes with outstanding reproducibility. The electrodes were also functionalized with different nanostructured thin films via dip-coating Layer-by-Layer technique to develop a 3D printed e-tongue setup. As a proof of concept, the printed e-tongue was applied to soil analysis. A control soil sample was enriched with several macro-nutrients to the plants (N, P, K, S, Mg and Ca) and the discrimination was done by electrical impedance spectroscopy of water solution of the soil samples. The data was analyzed by Principal Component Analysis and the 3D printed sensor distinguished clearly all enriched samples despite the complexity of the soil chemical composition. The 3D printed e-tongue successfully used in soil analysis encourages further investments in developing new sensory tools for precision agriculture and other fields exploiting the simplicity and flexibility offered by the 3D printing techniques.
机译:如今,电子传感器制造面临的最大问题之一是高效电极的建立,这是传统技术所需的昂贵,复杂和多阶段工艺的替代方法。由于在各种表面上冲压电极的简单性和速度,印刷电子设备成为完成此任务的有趣替代方法。在这种情况下,熔融沉积建模3D打印是一种新兴的,具有成本效益的替代技术,用于制造复杂的结构,该结构可以利用更多的创意和新材料为多个领域提供快速的设备原型。我们在这里展示了使用标准的CoreXY 3D打印机(使用透明的和基于石墨烯的PLA灯丝)制成的叉指电极。 Macro 3D打印电极可在6分钟内轻松组装,并具有出色的可重复性。电极还通过浸涂逐层技术用不同的纳米结构薄膜进行功能化,以开发3D打印电子舌设置。作为概念的证明,将印刷的电子舌应用于土壤分析。对照土壤样品富含植物中的几种常量营养素(N,P,K,S,Mg和Ca),并通过电阻抗光谱法对土壤样品的水溶液进行区分。通过主成分分析对数据进行了分析,尽管土壤化学成分非常复杂,但3D打印传感器清楚地区分了所有富集样品。成功地用于土壤分析的3D打印电子舌头鼓励进一步投资,以利用3D打印技术提供的简单性和灵活性为精密农业和其他领域开发新的传感工具。

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