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High-Efficiency and High-Throughput On-Chip Exchange of the Continuous Phase in Droplet Microfluidic Systems:

机译:液滴微流体系统中连续相的高效和高通量芯片上交换:

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This article describes an integrated platform for the on-chip exchange of the continuous phase in droplet microfluidic systems. The drops used in this work are stabilized by amphiphilic nanoparticles. For some characterizations and applications of these nanoparticle-stabilized drops, including the measurement of adsorption dynamics of nanoparticles to the droplet surface, it is necessary to change the composition of the continuous phase from that used during the droplet generation process. Thus far, no work has reported the exchange of the continuous phase for a large number (>1 million) of drops in a microfluidic system. This article describes the design and characterization of a high-efficiency and high-throughput on-chip exchanger of the continuous phase in a continuous-flow droplet microfluidic system. The efficiency of exchange was higher than 97%. The throughput was greater than 1 million drops/min, and this can be increased further by increasing the number of parallel exchangers used. Because drops are injected into the exchanger in a continuous-flow manner, the method is directly compatible with automation to further increase its reliability and potential scale-up.
机译:本文介绍了用于微滴微流系统中连续相的片上交换的集成平台。两亲性纳米颗粒可稳定用于这项工作的液滴。对于这些纳米颗粒稳定的液滴的某些表征和应用,包括纳米颗粒对液滴表面的吸附动力学的测量,有必要将连续相的组成与液滴生成过程中所用的相改变。迄今为止,还没有任何工作报道在微流体系统中将连续相交换为大量(> 1百万)液滴。本文介绍了连续流液滴微流体系统中连续相的高效,高通量芯片上交换器的设计和表征。交换效率高于97%。吞吐量大于一百万滴/分钟,可以通过增加使用的并行交换器的数量来进一步提高吞吐量。由于液滴以连续流动的方式注入到交换器中,因此该方法与自动化直接兼容,以进一步提高其可靠性和潜在的扩大规模。

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