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Rapid functionalization of cantilever array sensors by inkjet printing

机译:通过喷墨打印快速实现悬臂阵列传感器的功能化

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The controlled deposition of functional layers is the key to converting nanomechanical cantilevers into chemical or biochemical sensors. Here, we introduce inkjet printing as a rapid and general method to coat cantilever arrays efficiently with various sensor layers. Self-assembled monolayers of alkanethiols were deposited on selected Au-coated cantilevers and rendered them sensitive to ion concentrations or pH in liquids. The detection of gene fragments was achieved with cantilever sensors coated with thiol-linked single-stranded DNA oligomers on Au. A selective etch protocol proved the uniformity of the monolayer coatings at a microscopic level. A chemical gas sensor was fabricated by printing thin layers of different polymers from dilute solutions onto cantilevers. The inkjet method is easy to use, faster and more versatile than coating via microcapillaries or the use of pipettes. In addition, it is scalable to large arrays and can coat arbitrary structures in non-contact.
机译:功能层的受控沉积是将纳米机械悬臂梁转换为化学或生化传感器的关键。在这里,我们介绍喷墨打印作为一种快速而通用的方法,以在各种传感器层上有效地覆盖悬臂阵列。烷硫醇的自组装单分子层沉积在选定的Au涂层悬臂上,使其对液体中的离子浓度或pH敏感。基因片段的检测是通过在Au上覆盖有巯基连接的单链DNA寡聚体的悬臂传感器实现的。选择性蚀刻方案在微观水平上证明了单层涂层的均匀性。通过将稀溶液中不同聚合物的薄层印刷到悬臂上来制造化学气体传感器。与通过微毛细管或使用移液管进行涂布相比,喷墨方法易于使用,速度更快,用途更广泛。此外,它可扩展至大型阵列,并可以非接触方式涂覆任意结构。

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