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首页> 外文期刊>Journal of Micromechanics and Microengineering >Droplet merging in a straight microchannel using droplet size or viscosity difference
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Droplet merging in a straight microchannel using droplet size or viscosity difference

机译:使用液滴大小或粘度差,液滴在直的微通道中合并

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摘要

In the present study, a novel droplet-merging technique is proposed, which enables two nanoliter or picoliter droplets to merge in a straight microchannel with high precision. Two dispersed phase fluids are supplied respectively from two side channels in a certain range of flow rates to generate droplets of different sizes or different viscosities in a regularly alternating mode at a cross-channel intersection prior to the straight microchannel, in such a manner that the droplets are spontaneously synchronized by themselves due to the competition of the two interfaces formed at the cross-channel intersection. Then they are autogeneously merged in the downstream straight microchannel with or without a sudden expansion of the cross section, due to their velocity difference which is induced as they are transported aboard the continuous phase fluid. This droplet-merging method has no desynchronization or secondary-merging problems. Thus, it can be applied efficiently to mixing or encapsulating one target sample with another material for the purposes of nanoparticle synthesis, hydrogel-bead production, cell transplantation and so forth.
机译:在本研究中,提出了一种新颖的液滴合并技术,该技术可使两个纳升或皮升液滴在高精度的直线微通道中合并。在一定的流量范围内分别从两个侧通道提供两种分散相的流体,以在直线微通道之前的跨通道交叉点以规则交替的方式产生不同大小或不同粘度的液滴。由于在跨通道交叉处形成的两个界面的竞争,液滴自身自发地同步。然后,由于它们在连续相流体上运输时所引起的速度差,它们在下游的直线微通道中自生地融合在一起,无论有无横截面突然膨胀。这种液滴合并方法不存在失步或二次合并问题。因此,其可以有效地用于将一个目标样品与另一种材料混合或封装,以用于纳米颗粒合成,水凝胶珠生产,细胞移植等目的。

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