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Continuous transfer of liquid metal droplets across a fluid-fluid interface within an integrated microfluidic chip

机译:液态金属小滴通过集成微流控芯片内的流体-流体界面连续转移

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摘要

Micro scale liquid metal droplets have been hailed as the potential key building blocks of future micro-electro-mechanical systems (MEMS). However, most of the current liquid metal enabled systems involve millimeter scale droplets, which are manually injected onto the desired locations of the microchip. Despite its simplicity, this method is impractical for patterning large arrays or complex systems based on micro scale droplets. Here, we present a microfluidic chip, which integrates continuous generation of micro scale galinstan droplets in glycerol, and the hydrodynamic transfer of these droplets into sodium hydroxide (NaOH) solution. Observation via high-speed imaging along with computational fluid dynamics (CFD) analysis are utilised to comprehend the lateral migration of droplets from the glycerol to NaOH fluid. This platform is simple, can be readily integrated into other microfluidic systems, and creates flexibility by separating the continuous phase for droplet generation from the eventual target carrier fluid within a monolithic chip.
机译:微型液态金属小滴已被誉为未来微机电系统(MEMS)的潜在关键构件。但是,当前大多数启用液态金属的系统都包含毫米级的液滴,这些液滴会手动注入到微芯片的所需位置。尽管它很简单,但是该方法对于基于微型液滴的大型阵列或复杂系统的图形化是不切实际的。在这里,我们介绍了一种微流控芯片,该芯片集成了甘油中微细加仑斯坦小滴的连续生成,以及将这些小滴的流体动力学转移到氢氧化钠(NaOH)溶液中。通过高速成像观察以及计算流体动力学(CFD)分析可了解液滴从甘油到NaOH流体的横向迁移。该平台很简单,可以很容易地集成到其他微流体系统中,并且通过将用于产生液滴的连续相与单片芯片中最终的目标载流子流体分开来创建灵活性。

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