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A microfabricated electrical SPLITT system

机译:微型电气SPLITT系统

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摘要

A growing need for methods to analyze and prepare monodisperse nanoparticles on an industrial scale exists and may be solved by the application of split flow thin fractionation(SPLITT)at the microscale.Microfluidic systems of this type have the ability to separate nanoparticles with high precision in a continuous manner.A miniaturized SPLITT system can be fabricated using standard microfabrication technologies,works in a continuous mode,and can be used as a sample preparation instrument in a micro-total-analysis-system(mu-TAS).In this paper,a miniaturized electrical SPLITT system,which separates particles continuously based on electrophoretic mobility,has been characterized.The advantages of miniaturization have been elucidated.The various aspects of the micro SPLITT system discussed in this paper can be broadly classified into:micro SPLITT system design,fluidics modeling to refine the splitter arrangements,and experimental characterization of the SPLITT system.The design of the micro SPLITT system has been elucidated focusing on the two designs that were implemented.Fluid modeling,used to arrive at a new SPLITT design,was done using a commercially available CFD package to investigate behavior of the fluid in the microchannel with various splitter arrangements.Testing was done with nanoparticles of varying diameter and electrophoretic mobilities to verify the modeling results and demonstrate functionality of the SPLITT system.Particles eluted from both outlets of the SPLITT system were characterized using AFM and SEM to verify the function of the system.
机译:对工业规模分析和制备单分散纳米颗粒的方法的需求不断增长,可以通过在微尺度上应用分流薄层分离技术(SPLITT)来解决。此类微流体系统具有在纳米颗粒中高精度分离纳米颗粒的能力。可以使用标准的微细加工技术制造小型SPLITT系统,并以连续模式工作,并且可以用作微全分析系统(mu-TAS)中的样品制备仪器。表征了一种基于电泳迁移率连续分离颗粒的小型SPLITT电系统。阐明了小型化的优势。本文讨论的micro SPLITT系统的各个方面可大致分为:micro SPLITT系统设计,进行流体动力学建模以完善分流器布置,并对SPLITT系统进行实验表征。已阐明SPLITT系统,重点关注已实现的两个设计。使用可商购的CFD软件包对流体建模进行建模,以得出一种新的SPLITT设计,该流体建模用于研究采用各种分流器布置的微通道中流体的行为。用AFM和SEM对从SPLITT系统的两个出口洗脱的颗粒进行了表征,以验证该系统的功能。

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