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Inkjet printed silver patterning on PDMS to fabricate microelectrodes for microfluidic sensing

机译:在PDMS上喷墨印刷银图案以制造用于微流体传感的微电极

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A simple and effective metal patterning technique on polydimethylsiloxane (PDMS) using inkjet printed silver nanoparticles with a (3-mercaptopropyl) trimethoxysilane (MPTMS) adhesion promoter to form silver microelectrodes for microfluidic systems is presented. Inkjet printing is an alternative additive microfabrication technique enabling the possibility of direct metal patterning on PDMS from metal bearing liquid inks. However, the hydrophobic nature of PDMS was found to inhibit pattern formation of ink on as-fabricated substrates due to droplet coalescence. Both O plasma and silane adhesion treatment were explored to overcome this limitation and were evaluated using soak testing and ultrasonication. MPTMS, applied in a two-step immersion process, was found to promote PDMS surface wettability while maintaining silver adhesion with a usable working time. The resulting printed silver patterns exhibit good compactness and continuity, and were used to fabricate three-electrode electrochemical sensors directly on PDMS successfully.
机译:提出了一种简单有效的在聚二甲基硅氧烷(PDMS)上进行金属构图的技术,该技术使用具有(3-巯基丙基)三甲氧基硅烷(MPTMS)粘合促进剂的喷墨印刷银纳米颗粒形成用于微流体系统的银微电极。喷墨印刷是一种替代性的附加微细加工技术,能够从含金属的液体油墨在PDMS上直接进行金属构图。然而,由于液滴的聚结,发现PDMS的疏水性抑制了在已加工的基底上油墨的图案形成。探索了O等离子体和硅烷粘附处理来克服这一限制,并使用浸泡测试和超声处理对其进行了评估。发现在两步浸入过程中应用MPTMS可以提高PDMS表面的可湿性,同时在可用的工作时间内保持银的附着力。所得的印刷银图案显示出良好的致密性和连续性,并成功地用于直接在PDMS上制造三电极电化学传感器。

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