Liang Weibin, Austin Robert H, Sturm James C
Princeton Institute for Science and Technology of Materials (PRISM), Princeton, New Jersey 08544, USA.
Lab Chip. 2020 Sep 21;20(18):3461-3467. doi: 10.1039/d0lc00570c. Epub 2020 Aug 17.
We describe a deterministic lateral displacement (DLD) for particle separation with only a single column of bumping features. The bifurcation of fluid streams at obstacles is not set by the "tilt" of columns with respect to macroscopic current flow, but rather by the fluidic resistances for lateral flow at each obstacle. With one column of 14 bumping features and corresponding inlet/outlet channels, the single-column DLD can separate particles with diameters of 4.8 μm and 9.9 μm at 30 μL min, with an area of only 0.37 mm × 1.5 mm (0.55 mm). The large-cell output contains over 99% of the 9.9 μm particles and only 0.2% of the 4.8 m particles. The throughput per area of 54 μL min per mm represents a 10× increase over previous selective harvesting reports for microfluidic devices in a similar particle size range.
我们描述了一种仅具有单列碰撞特征的确定性侧向位移(DLD)用于颗粒分离。流体流在障碍物处的分叉不是由列相对于宏观电流流动的“倾斜”设定的,而是由每个障碍物处横向流动的流体阻力设定的。使用具有14个碰撞特征以及相应的入口/出口通道的单列,单列DLD可以在流速为30 μL/min时分离直径为4.8μm和9.9μm的颗粒,其面积仅为0.37 mm×1.5 mm(0.55 mm)。大颗粒输出包含超过99%的9.9μm颗粒和仅0.2%的4.8μm颗粒。每平方毫米54 μL/min的单位面积通量比先前关于类似粒径范围内微流控装置的选择性收集报告提高了10倍。