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Surface microfluidics fabricated by photopatternable superhydrophobic nanocomposite

机译:可光图案化的超疏水纳米复合材料制备的表面微流体

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摘要

Surface microfluidics can be of potential use in a variety of emerging applications, including biological and chemical analysis, cellular detection and manipulation, high-throughput pharmaceutical screening, and etc. In comparison with the conventional closed-channel micro-fluidic system, surface microfluidics shows the distinct advantages of simple construction, direct surface access, no cavitation or interphase obstruction, clear optical path, easy fluidic packaging, and device reusability. In this article, we first present surface microfluidic networks microfabricated by a single-step lithographic process using a novel superhydrophobic photosensitive nanocomposite formula. The photopatternable superhydrophobic nanocomposite (PSN) incorporates PTFE nanoparticles into a SU-8 matrix, in which superhydrophobicity (contact angle of above 160°) is primarily contributed by the extremely low chemical energy and nano-topology of PTFE nanoparticles, while the SU-8 polymer matrix offers photopatternability (lithographic resolution of 10 μm) and substrate adhesion. Moreover, an additive intermediate layer with hydrophilic sidewall considerably reduces flow resistance while improving the substrate adhesion, as a crucial improvement from the previous surface flow configuration. Furthermore, self-propelled microfluidic networks driven by surface tension-induced pressure gradient have been fabricated and characterized to demonstrate the applicability of the novel nanocomposite fabrication approach.
机译:表面微流体可以在各种新兴应用中潜在使用,包括生物和化学分析,细胞检测和操作,高通量药物筛选等。与常规的闭路微流体系统相比,表面微流体显示结构简单,直接进入表面,无气蚀或相间阻塞,光路清晰,易于流体包装以及设备可重复使用性等明显优势。在本文中,我们首先介绍了使用新型超疏水光敏纳米复合配方通过单步光刻工艺微加工而成的表面微流体网络。可光图案化的超疏水纳米复合材料(PSN)将PTFE纳米颗粒掺入SU-8基质中,其中超疏水性(接触角大于160°)主要是由于PTFE纳米颗粒的化学能和纳米拓扑结构极低而产生的,而SU-8聚合物基体具有光图案化能力(光刻分辨率为10μm)和基材附着力。此外,具有亲水性侧壁的附加中间层大大降低了流动阻力,同时改善了基材的附着力,这是对先前表面流动构造的一项重要改进。此外,由表面张力引起的压力梯度驱动的自推进微流网络已被制造和表征,以证明新型纳米复合材料制造方法的适用性。

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