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Open-tubular radially cyclical electric field-flow fractionation (OTR-CyElFFF): an online concentric distribution strategy for simultaneous separation of microparticles

机译:露天管径向周期性电场 - 流量分级(OTR-Cyelfff):用于同时分离微粒的在线同心分布策略

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摘要

An open-tubular radially cyclical electric field-flow fractionation technique which achieves the online separation of microparticles in a functional annular channel is proposed in this study. The system was set up by using a stainless steel tube and a platinum wire modified with ionic liquid/mesoporous silica materials as the external and internal electrodes. The feasibility for online separation of various particles was experimentally demonstrated. Particles in the channel were affected by a radial electric field and field-flow fractionation (FFF). On the cross section, different particles showed distinctive migration distances depending on their own properties and the different magnitudes of forces being exerted. The same kind of particles form an annular distribution within the same annulus while different particles form annular distributions at varied concentric annuli through electrophoresis. Under a laminar flow of FFF, different sizes of particles formed a conical arrangement within the annular separation channel. With the joint influence of electric field and flow field, different trajectories were obtained and the particles were eventually separated. Voltage, frequency and duty cycle value are the main parameters affecting the separation of particles. By adjusting these parameters, particles migrate in a zigzag trajectory on one side of the electrodes (mode I) and reach both sides of the electrodes (mode II). Six polystyrene particles were completely separated with high resolution within several minutes. Our system offers numerous advantages of label-free, high-resolution and online separation without tedious operations, and it is a promising tool for the effective separation of various micro-objects.
机译:在该研究中提出了一种达到透明径向循环电场 - 流量分级,实现微粒在功能环形通道中的在线分离。通过使用不锈钢管和用离子液/介孔二氧化硅材料改性的铂导线作为外部和内部电极来设置该系统。实验证明了各种颗粒的在线分离的可行性。通道中的颗粒受径向电场和场流分馏(FFF)的影响。在横截面上,不同的颗粒根据自己的性质和施加不同的力幅度显示出独特的迁移距离。相同种类的颗粒在相同的环内形成环形分布,而不同的颗粒通过电泳在不同的同心载载下形成环形分布。在FFF的层流下,不同尺寸的颗粒在环形分离通道内形成了锥形布置。随着电场和流场的关节影响,获得了不同的轨迹,最终将颗粒分离。电压,频率和占空比值是影响粒子分离的主要参数。通过调整这些参数,粒子在电极(模式I)的一侧上的Z字形轨迹迁移并到达电极的两侧(模式II)。在几分钟内以高分辨率完全分离六个聚苯乙烯颗粒。无需繁琐的操作,我们的系统提供了无标签,高分辨率和在线分离的许多优点,并且是有效分离各种微物体的有希望的工具。

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  • 来源
    《Lab on a chip》 |2020年第19期|共9页
  • 作者单位

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Changchun Normal Univ Dept Chem Changji North Rd 677 Changchun 130032 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Sungkyunkwan Univ Dept Chem Seoul South Korea;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

    Yanbian Univ Dept Chem Pk Rd 977 Yanji 133002 Jilin Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学实验(实验化学);生物化学;生物科学;化学;
  • 关键词

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