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Modular Polymer Biosensors by Solvent Immersion Imprint Lithography

机译:溶剂浸渍压印光刻法制备模块化聚合物生物传感器

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摘要

We recently demonstrated Solvent Immersion Imprint Lithography (SIIL), a rapid benchtop microsystem prototyping technique, including polymer functionalization, imprinting and bonding. Here, we focus on the realization of planar polymer sensors using SIIL through simple solvent immersion without imprinting. We describe SIIL's impregnation characteristics, including an inherent mechanism that not only achieves practical doping concentrations, but their unexpected 2-fold enhancement compared to the immersion solution. Subsequently, we developed and characterized optical sensors for detecting molecular O2. To this end, a substantially high dynamic range is reported, including its control through the immersion duration, a manifestation of SIIL's modularity. Overall, SIIL exhibits the potential of improving the operating characteristics of polymer sensors, while significantly accelerating their prototyping, as it requires a few seconds of processing and no need for substrates or dedicated instrumentation. These are critical for O2 sensing as probed by way of example here, as well as any polymer permeable reactant.
机译:我们最近展示了溶剂浸没式烙印光刻(SIIL),一种快速的台式微系统原型技术,包括聚合物功能化,压印和键合。在这里,我们重点介绍通过简单的溶剂浸没而不会留下印迹的,使用SIIL的平面聚合物传感器的实现。我们描述了SIIL的浸渍特性,包括一种固有的机制,该机制不仅可以实现实际的掺杂浓度,而且与浸入溶液相比,其出乎意料的2倍增强。随后,我们开发并表征了用于检测分子O2的光学传感器。为此,报道了相当高的动态范围,包括通过浸入时间进行的控制,这是SIIL模块化的体现。总体而言,SIIL具有改善聚合物传感器工作特性的潜力,同时可以大大加快其原型制作速度,因为它需要几秒钟的处理时间,并且不需要基板或专用仪器。这些对于此处通过示例方式探测到的O2感测以及任何可渗透聚合物的反应物都是至关重要的。

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