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首页> 外文期刊>Lab on a chip >Tipping the balance of deterministic lateral displacement devices using dielectrophoresis
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Tipping the balance of deterministic lateral displacement devices using dielectrophoresis

机译:利用介电泳实现确定性侧向位移装置的平衡

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We report the use of dielectrophoresis (DEP) to achieve tunability, improve dynamic range and open up for the separation of particles with regard to parameters other than hydrodynamic size in deterministic lateral displacement (DLD) devices. DLD devices have been shown capable of rapidly and continuously separating micrometer sized plastic spheres by size with a resolution of 20 nm in diameter and of being able to handle the separation of biological samples as wide ranging as bacterial artificial chromosomes and blood cells. DEP, while not exhibiting the same resolution in size separation as DLD, has the benefit of being easy to tune and can, by choosing the frequency, be used to probe a variety of particle properties. By combining DLD and DEP we open up for the advantages, while avoiding the drawbacks, of the two techniques. We present a proof of principle in which the critical size for separation of polystyrene beads is tuned in the range 2-6 nm in a single device by the application of moderate (100 V cm~(-1)), low frequency (100 Hz) AC electric fields. The behaviour of the device was further investigated by performing simulations of particle trajectories, the results of which were in good qualitative agreement with experiments, indicating the potential of the method for tunable, high-resolution separations with respect to both size and polarisability.
机译:我们报道了使用介电电泳(DEP)来实现可调谐性,改善动态范围并为确定性横向位移(DLD)设备中流体动力学尺寸以外的参数的分离开辟了道路。已显示出DLD设备能够按尺寸快速,连续地分离直径为20 nm的微米级塑料球,并且能够处理诸如细菌人工染色体和血细胞之类的生物样品。 DEP在尺寸分离方面不具有与DLD相同的分辨率,但具有易于调整的优点,并且可以通过选择频率来探测各种粒子特性。通过将DLD和DEP结合起来,我们可以在避免缺点的同时,充分利用这两种技术的优势。我们提供了一个原理证明,其中通过应用中度(100 V cm〜(-1)),低频(100 Hz)在单个设备中将分离聚苯乙烯珠的临界尺寸调节在2-6 nm范围内)交流电场。通过对粒子轨迹进行仿真进一步研究了该设备的性能,其结果与实验在质量上吻合良好,表明了该方法在尺寸和极化率方面可调谐,高分辨率分离的潜力。

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