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Vertical spreading of two-dimensional crystalline colloidal arrays

机译:二维晶体胶体阵列的垂直扩展

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摘要

We report on a novel self-driven climbing of two-dimensional (2-D) ordered monolayer crystalline colloidal arrays (CCAs). This phenomenon can be used to rapidly and efficiently prepare large area, highly ordered 2-D array monolayer CCA films on various substrates. Large area 2-D polystyrene (PS) particle CCAs were fabricated on water surfaces by a needle tip flow technique. Introduction of a wet substrate through the 2-D particle monolayer array on the water surface causes the 2-D array to flow onto the wet substrate surface due to a surface spreading pressure. This method can quickly prepare ordered 2-D particle arrays on numerous wet substrates including flat/curved glass slides, inner walls of glass tubes, hydro-gels, flexible polymer films, patterned surfaces, etc. By using responsive hydrogels as substrates, we can conveniently prepare 2-D photonic crystal sensors that can be used to visually determine analyte concentrations. For example, we prepared 580 nm PS 2-D arrays on poly(2-hydroxyethyl methacrylate) hydrogels to sense ethanol in water.
机译:我们报告了二维(2-D)有序单层晶体胶体阵列(CCA)的新型自我驱动的攀登。此现象可用于在各种基板上快速有效地制备大面积,高度有序的二维阵列单层CCA膜。通过针尖流动技术在水表面制备了大面积的二维聚苯乙烯(PS)颗粒CCA。通过水表面上的2-D颗粒单层阵列引入湿基质,由于表面扩散压力,导致2-D阵列流到湿基质表面上。这种方法可以在许多湿的基材上快速制备有序的二维粒子阵列,包括平坦/弯曲的玻璃载玻片,玻璃管的内壁,水凝胶,柔性聚合物薄膜,有图案的表面等。通过使用响应水凝胶作为基材,我们可以方便地准备可用于可视化确定分析物浓度的二维光子晶体传感器。例如,我们在聚(甲基丙烯酸2-羟乙酯)水凝胶上制备了580 nm PS 2-D阵列,以感测水中的乙醇。

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