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Control and Measurement of the Phase Behavior of Aqueous Solutions Using Microfluidics

机译:使用微流体控制和测量水溶液的相行为

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A microfluidic device denoted the Phase Chip has been designed to measure and manipulate the phase diagram of multicomponent fluid mixtures. The Phase Chip exploits the permeation of water through poly(dimethylsiloxane) (PDMS) in order to controllably vary the concentration of solutes in aqueous nanoliter volume microdrops stored in wells. The permeation of water in the Phase Chip is modeled using the diffusion equation, and good agreement between experiment and theory is obtained. The Phase Chip operates by first creating drops of the water/solute mixture whose composition varies sequentially. Next, drops are transported down channels and guided into storage wells using surface tension forces. Finally, the solute concentration of each stored drop is simultaneously varied and measured. Two applications of the Phase Chip are presented. First, the phase diagram of a polymer/salt mixture is measured on-chip and validated off-chip, and second, protein crystallization rates are enhanced through the manipulation of the kinetics of nucleation and growth.
机译:设计为表示相芯片的微流控设备可测量和处理多组分流体混合物的相图。相控芯片利用水通过聚(二甲基硅氧烷)(PDMS)的渗透来可控地改变储存在孔中的纳升水溶液微滴中溶质的浓度。利用扩散方程对水在相片中的渗透进行了建模,实验与理论之间取得了很好的一致性。相芯片通过首先产生水/溶质混合物的液滴来工作,其成分顺序变化。接下来,液滴通过表面张力沿通道传输并被引导到存储井中。最终,同时改变和测量每个存储液滴的溶质浓度。提出了相位芯片的两种应用。首先,在芯片上测量并验证了芯片外聚合物/盐混合物的相图,其次,通过控制成核和生长动力学,提高了蛋白质的结晶速率。

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