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Wetting in color: Colorimetric differentiation of organic liquids with high selectivity

机译:润湿颜色:高选择性地比色区分有机液体

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Colorimetric litmus tests such as pH paper have enjoyed wide commercial success due to their inexpensive production and exceptional ease of use. Expansion of colorimetry to new sensing paradigms is challenging because macroscopic color changes are seldom coupled to arbitrary differences in the physical/chemical properties of a system. Here we present in detail the design of a "Wetting In Color Kit" (WICK), an inexpensive and highly selective colorimetric indicator for organic liquids that exploits chemically encoded inverse-opal photonic crystals to project minute differences in liquids' wettability to macroscopically distinct, easy-to-visualize structural color patterns. We show experimentally and corroborate with theoretical modeling using percolation theory that the highly symmetric structure of our large-area, defect-free SiO _2 inverse-opal films leads to sharply defined threshold wettability for liquid infiltration, occurring at intrinsic contact angles near 20° with an estimated resolution smaller than 5°. The regular structure also produces a bright iridescent color, which disappears when infiltrated with liquid, naturally coupling the optical and fluidic responses. To deterministically design a WICK that differentiates a broad range of liquids, we introduced a nondestructive quality control procedure to regulate the pore structure and developed two new surface modification protocols, both requiring only silanization and selective oxidation. The resulting tunable, built-in horizontal and vertical chemistry gradients let us tailor the wettability threshold to specific liquids across a continuous range. With patterned oxidation as a final step, we control the shape of the liquid-specific patterns displayed, making WICK easier to read. Using these techniques, we demonstrate the applicability of WICKs in several exemplary systems that colorimetrically distinguish (i) ethanol-water mixtures varying by only 2.5% in concentration; (ii) methanol, ethanol, and isopropyl alcohol; (iii) hexane, heptane, octane, nonane, and decane; and (iv) samples of gasoline (regular unleaded) and diesel. As wetting is a generic fluidic phenomenon, we envision that WICK could be suitable for applications in authentication or identification of unknown liquids across a broad range of industries.
机译:比色石蕊试纸,例如pH试纸,由于其廉价的生产和卓越的易用性而获得了广泛的商业成功。比色法扩展到新的传感范式是具有挑战性的,因为宏观的颜色变化很少与系统的物理/化学性质的任意差异耦合。在这里,我们详细介绍“润湿色套件”(WICK)的设计,这是一种廉价且高度选择性的有机液体比色指示剂,该指示剂利用化学编码的反蛋白石光子晶体来预测液体的润湿性的微小差异,从而在宏观上有所区别,易于可视化的结构颜色图案。我们通过实验和渗滤理论的理论模型证明,我们的大面积,无缺陷的SiO _2反蛋白石薄膜的高度对称结构导致液体渗透的阈值润湿性明确定义,发生在固有接触角接近20°时,估计的分辨率小于5°。规则结构还产生明亮的彩虹色,当渗入液体时消失,自然地将光学和流体响应耦合在一起。为了确定性地设计一种可区分多种液体的WICK,我们引入了一种无损质量控制程序来调节孔结构,并开发了两种新的表面改性方案,都只需要硅烷化和选择性氧化。由此产生的可调的,内置的水平和垂直化学梯度使我们能够针对连续范围内的特定液体调整润湿性阈值。将图案化氧化作为最后一步,我们控制显示的液体特定图案的形状,使WICK更易于阅读。使用这些技术,我们证明了WICKs在比色法区分(i)浓度仅变化2.5%的乙醇-水混合物的几种示例性系统中的适用性; (ii)甲醇,乙醇和异丙醇; (iii)己烷,庚烷,辛烷,壬烷和癸烷; (iv)汽油(普通无铅)和柴油样品。由于润湿是一种普遍的流体现象,因此我们认为WICK可能适用于多种行业中未知液体的鉴定或识别。

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