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Development and Characterization of a Novel Low-Cost Water-Level and Water Quality Monitoring Sensor by Using Enhanced Screen Printing Technology with PEDOT:PSS

机译:利用带有PEDOT:PSS的增强型丝网印刷技术开发和表征新型低成本水位和水质监测传感器

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摘要

A novel capacitive sensor for measuring the water-level and monitoring the water quality has been developed in this work by using an enhanced screen printing technology. A commonly used environment-friendly conductive polymer poly(3,4-ethylenedioxythiophene):poly (styrenesulfonate) (PEDOT:PSS) for conductive sensors has a limited conductivity due to its high sheet resistance. A physical treatment performed during the printing process has reduced the sheet resistance of printed PEDOT:PSS on polyethylenterephthalat (PET) substrate from 264.39 Ω/sq to 23.44 Ω/sq. The adhesion bonding force between printed PEDOT:PSS and the substrate PET is increased by using chemical treatment and tested using a newly designed adhesive peeling force test. Using the economical conductive ink PEDOT:PSS with this new physical treatment, our capacitive sensors are cost-efficient and have a sensitivity of up to 1.25 pF/mm.
机译:通过使用增强的丝网印刷技术,在这项工作中开发了一种新颖的电容式传感器,用于测量水位并监控水质。用于导电传感器的常用的环境友好型导电聚合物聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)由于其高薄层电阻而具有受限的导电性。在打印过程中进行的物理处理已将在聚乙烯对苯二酸酯(PET)基材上打印的PEDOT:PSS的薄层电阻从264.39Ω/ sq降低到23.44Ω/ sq。通过化学处理可提高印刷的PEDOT:PSS与基材PET之间的粘合力,并使用新设计的粘合剂剥离力测试进行测试。使用经济实惠的导电油墨PEDOT:PSS进行这种新的物理处理,我们的电容式传感器经济高效,灵敏度高达1.25 pF / mm。

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