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Robust and versatile ionic liquid microarrays achieved by microcontact printing

机译:通过微接触印刷获得强大而通用的离子液体微阵列

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摘要

Lab-on-a-chip and miniaturized systems have gained significant popularity motivated by marked differences in material performance at the micro-to-nano-scale realm. However, to fully exploit micro-to-nano-scale chemistry, solvent volatility and lack of reproducibility need to be overcome. Here, we combine the non-volatile and versatile nature of ionic liquids with microcontact printing in an attempt to establish a facile protocol for high throughput fabrication of open microreactors and microfluidics. The micropatterned ionic liquid droplets have been demonstrated as electrochemical cells and reactors for microfabrication of metals and charge transfer complexes, substrates for immobilization of proteins and as membrane-free high-performance amperometric gas sensor arrays. The results suggest that miniaturized ionic liquid systems can be used to solve the problems of solvent volatility and slow mass transport in viscous ionic liquids in lab-on-a-chip devices, thus providing a versatile platform for a diverse number of applications.
机译:芯片实验室和小型化系统由于在微米到纳米级领域材料性能的显着差异而受到广泛欢迎。但是,要充分利用微米级到纳米级的化学,需要克服溶剂的挥发性和可重复性的不足。在这里,我们将离子液体的非挥发性和通用性与微接触印刷相结合,以期为开放式微反应器和微流控技术的高通量制造建立简便的协议。微图案化的离子液滴已被证明是用于金属和电荷转移络合物的微细加工的电化学电池和反应器,用于固定蛋白质的基质以及无膜高性能电流型气体传感器阵列。结果表明,小型化的离子液体系统可用于解决芯片实验室设备中粘性离子液体中的溶剂挥发性和质量传输缓慢的问题,从而为多种应用提供了通用平台。

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