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Self-driven droplet transport: Effect of wettability gradient and confinement

机译:自动驱动的液滴传输:润湿性梯度和限制的影响

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Surface tension driven droplet transport in an open surface is increasingly becoming popular for various microfluidic applications. In this work, efficient transport of a glycerin droplet on an open wettability gradient surface with controlled wettability and confinement is numerically investigated. Nondimensional track width w(star) (ratio of the width of the wettability gradient track w and the initial droplet diameter d(0)) of a wettability gradient track laid on a superhydrophobic background represents wettability confinement. A lower value of w(star) represents higher wettability confinement. Droplet behavior changes for different wettability confinements and gradients of the track. It is found that droplet velocity is a function of the wettability confinement and the gradient; droplet transport velocity is maximum for w(star) = 0.8. Higher confinement (w(star) < 0.8) leads to a significant reduction in droplet velocity. Droplet transport characteristics on hydrophilic superhydrophilic, hydrophobic-superhydrophilic, and superhydrophobic-superhydrophilic tracks are studied. It is found that for a fixed length of the track, droplet velocity is maximum for the superhydrophobic-superhydrophilic track. A droplet transport regime is demonstrated for a wettability gradient track with different confinements, and it is found that the droplet is transported for wettability confinement w(star) > 0.6 irrespective of the wettability gradient of the track. These findings provide valuable insight into efficient droplet manipulation in microfluidic devices. Published under license by AIP Publishing.
机译:表面张力驱动的液滴在开放式表面中的液滴传输越来越受到各种微流体应用的流行。在这项工作中,在数值研究了在具有受控润湿性和限制的开放式润湿性梯度表面上有效地运输甘油液滴在具有受控润湿性和限制的过程中。在超疏水背景上铺设的润湿性梯度轨道的润湿性梯度轨道W的不湿度梯度轨道的宽度曲线宽度W(星)(宽度梯度轨道W和初始液滴直径D(0))表示润湿性限制。较低的W(星)表示更高的润湿性限制。液滴行为对不同的润湿性限制和轨道梯度的变化。结果发现液滴速度是润湿性限制和梯度的函数;液滴传输速度为W(星)= 0.8的最大值。较高的限制(W(星)<0.8)导致液滴速度显着降低。研究了亲水性超水性,疏水性超水性和超疏水 - 超水性轨迹的液滴传输特性。结果发现,对于轨道的固定长度,超疏水 - 超硫基轨道的液滴速度最大。一种液滴传送制度证明具有不同分娩润湿性梯度轨道,并且可以发现,在液滴被输送用于润湿性约束瓦特(星形)> 0.6而不考虑轨道的可湿性梯度。这些发现提供了对微流体装置中有效的液滴操作的有价值的洞察力。通过AIP发布在许可证下发布。

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