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Testing and Characterization of Different Papers as Substrate Material for Printed Electronics and Application in Humidity Sensor

机译:不同纸张作为印刷电子基材材料的测试和表征及其在湿度传感器中的应用

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摘要

The use of papers as substrates in the process of manufacturing flexible electronic components is urgently required to obtain cost-effective products as well as to expand the potential applications of such components. This study aimed to examine the suitability of three different types of paper for sensor applications using an inkjet printing process. Three types of paper (denoted as Types 1, 2, and 3) designed for specific applications in printed electronics were selected and entirely characterized in terms of microscopic and macroscopic properties, such as internal fibers structure, cross-sectional layer structure, surface roughness, and hardness. Dot arrays were printed on these three types of paper to determine how the papers absorb silver ink and which one is the best substrate for manufacturing printed electronic components. After a comprehensive analysis, the paper that exhibited the best feature was further studied as a substrate for printing interdigitated electrodes to develop a humidity sensor. The Type 2 paper-based sensor demonstrated the variation in capacitance in the range from 9.4 to 10.6 pF while changing the relative humidity (RH) from 40 to 90%. Thus, Type 2 has the great potential for application in flexible sensors, suggesting the possibility of industrial scalability and mass production of inexpensive, biodegradable, and conformable electronic components.
机译:迫切需要在柔性电子元件的制造过程中将纸用作基材,以获取具有成本效益的产品以及扩大此类元件的潜在应用范围。这项研究旨在检查三种不同类型的纸张是否适合使用喷墨打印工艺的传感器应用。选择了三种类型的纸(分别表示为类型1、2和3),专门用于印刷电子产品,并在微观和宏观特性方面进行了全面表征,例如内部纤维结构,横截面层结构,表面粗糙度,和硬度。将点阵打印在这三种类型的纸上,以确定纸如何吸收银墨水,以及哪种纸是制造印刷电子元件的最佳基材。经过综合分析后,具有最佳性能的纸张被进一步用作印刷指状电极以开发湿度传感器的基材。 2型纸基传感器显示了9.4至10.6 pF范围内的电容变化,而相对湿度(RH)从40%变为90%。因此,类型2具有在柔性传感器中应用的巨大潜力,这表明了工业可扩展性和廉价,可生物降解和舒适的电子组件的批量生产的可能性。

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