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A continuous size-dependent particle separator using a negative dielectrophoretic virtual pillar array

机译:使用负介电虚拟柱阵列的尺寸依赖的连续颗粒分离器

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We present a continuous size-dependent particle separator using a negative dielectrophoretic (DEP) virtual pillar array. Two major problems in the previous size-dependent particle separators include the particle clogging in the mechanical sieving structures and the fixed range of separable particle sizes. The present particle separator uses the virtual pillar array generated by negative DEP force instead of the mechanical pillar array, thus eliminating the clogging problems. It is also possible to adjust the size of separable particles since the size of virtual pillars is a function of a particle diameter, applied voltage, flow rate, etc. At an applied voltage of 500 kHz, 10 V_(rms) (root mean sqaure voltage) sinusoidal wave and a flow rate of 0.40 μl min~(-1), we separate 5.7 ± 0.28 μm-, 8.0 ± 0.80 μm-, 10.5 ± 0.75 μm-, and 11.9 ± 0.12 μm-diameter polystyrene (PS) beads with a separation purity of 95%, 92%, 50%, and 63%, respectively. The 10.5 μm- and 11.9 μm-diameter PS beads have relatively low separation purity of 50% and 63%. However, at an applied voltage of 8 V_(rms), we separate 11.9 μm-diameter PS beads with a separation purity over 99%. At an applied voltage of 500 kHz, 10 V_(rms) sinusoidal wave and a flow rate of 0.11 μl min~(-1), we separate red blood cells (5.4 ±1.3 μm-diameter) and white blood cells (8.1 ± 1.5μm-diameter) with a separation purity over 99%. Therefore, the present particle separator achieves clog-free, size-dependent particle separation, which is capable of size tuning of separable particles.
机译:我们目前使用负介电(DEP)虚拟柱阵列的大小依赖于连续的粒子分离器。先前取决于尺寸的颗粒分离器的两个主要问题包括机械筛分结构中的颗粒堵塞和可分离颗粒尺寸的固定范围。本颗粒分离器使用由负DEP力产生的虚拟柱阵列代替机械柱阵列,从而消除了堵塞问题。由于虚拟柱的大小是粒径,施加电压,流速等的函数,因此也可以调整可分离粒子的大小。在施加电压500 kHz时,10 V_(rms)(均方根)正弦波,流速为0.40μlmin〜(-1),我们分离出直径为5.7±0.28μm-,8.0±0.80μm-,10.5±0.75μm和11.9±0.12μm的聚苯乙烯(PS)珠分离纯度分别为95%,92%,50%和63%。直径为10.5μm和11.9μm的PS珠的分离纯度相对较低,分别为50%和63%。但是,在施加8 V_(rms)的电压时,我们分离出直径为11.9μm的PS珠,其分离纯度超过99%。在500 kHz施加电压,10 V_(rms)正弦波和0.11μlmin〜(-1)的流速下,我们分离出直径为5.4±1.3μm的红细胞和白细胞(8.1±1.5)直径(μm直​​径),分离纯度超过99%。因此,本发明的颗粒分离器实现了无阻塞的,取决于尺寸的颗粒分离,其能够调节可分离颗粒的尺寸。

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