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Inkjet Printed Capacitive Transducers on Flexible Plastic Substrates with Increase Stability: Ag on PET

机译:柔性塑料基材上的喷墨印刷电容传感器,稳定性稳定性:AG

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Inkjet printed interdigitated transducers have been produced on flexible substrates and optimized for gas sensing applications by improving the sintering conditions and employing additional passivation procedures, like electroplating with Ni or whole transducer passivation through Parylene-C coating. The results of the performed investigations showed that the transducers printed with Ag ink can be used, as prepared, in capacitive gas sensing structures up to 70% relative humidity only. Higher humidity levels resulted in irreversible shifts of the nominal capacitance and conductance of the transducers. This drawback could be eliminated by the already addressed passivation procedures or upgraded sintering. The gas sensor structures based on the passivated printed transducers displayed good stability and sensing performance, demonstrating that fully printed and flexible capacitive gas sensors are feasible.
机译:喷墨印刷的交叉换能器已经在柔性基板上制造,并通过改善烧结条件并采用额外的钝化程序优化气体传感应用,例如通过聚对聚乙烯-C涂层用Ni或整个传感器钝化电镀。所进行研究的结果表明,用Ag油墨印刷的换能器可以如制备的那样,在电容气体感测结构上,仅适用于70%相对湿度。较高的湿度水平导致换能器的标称电容和电导的不可逆换档。已经解决的钝化程序或升级烧结可以消除此缺点。基于钝化印刷换能器的气体传感器结构显示出良好的稳定性和感测性能,表明完全印刷和柔性的电容气体传感器是可行的。

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