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On-demand concentration of an analyte on laser-printed polytetrafluoroethylene

机译:随需应变的分析物的浓度它们用聚四氟乙烯

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摘要

Controllable targeted deposition of an analyte dissolved in a liquid drop evaporating on a superhydrophobic surface has recently emerged as a promising concentrator approach with various applications ranging from ultrasensitive bioidentification to DNA molecule sorting. Here, we demonstrate that surface textures with non-uniform wettability fabricated using direct easy-to-implement femtosecond-pulse filament-assisted ablation of polytetrafluoroethylene substrates can be used to concentrate and deposit an analyte at a designated location out of a water droplet. The proposed surface textures contain a central superhydrophilic trap surrounded by superhydrophobic periodically arranged pillars with a hierarchical roughness. By optimizing the arrangement and geometry of the central trap and the surrounding superhydrophobic textures, the analyte dissolved in a 5 L water drop was fixed onto a 90 x 90 m(2) target. The proposed textures provide a concentration factor of 10(3), an order of magnitude higher than those for the previously reported surface textures. This promising ultrasensitive versatile platform allows the detection of fingerprints of the deposited analyte via surface-enhanced spectroscopy techniques (Raman scattering or photoluminescence) at an estimated detection threshold better than 10(-15) mol L-1.
机译:控制目标分析物的沉积溶解在液滴蒸发超疏水表面最近成为一个有前途的集中器与各种方法应用程序从超灵敏bioidentification DNA分子排序。我们表明,表面纹理非均匀润湿使用直接制作的易于实现femtosecond-pulsefilament-assisted消融的聚四氟乙烯基板可以使用集中和存款的分析物指定位置的水滴。提出了表面纹理包含一个中心superhydrophilic陷阱包围超疏水定期安排支柱分层的粗糙度。安排中央陷阱,和几何周围的超疏水结构,分析物溶解在5 L水滴是固定的到90 x 90米(2)目标。提供一个集中系数10(3),订单级高于以前表面纹理。允许超灵敏的多功能平台检测指纹的沉积通过表面增强光谱学分析物(拉曼散射或技术光致发光)估计检测阈值比10(-15)摩尔l - 1。

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