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基于外场可重构不对称感应电荷电动流的柔性连续粒子束切换。

Flexible Continuous Particle Beam Switching via External-Field-Reconfigurable Asymmetric Induced-Charge Electroosmosis.

机构信息

School of Electronics and Control Engineering , Chang'an University , Middle-Section of Nan'er Huan Road , Xi'an , Shaanxi 710064 , People's Republic of China.

出版信息

Anal Chem. 2018 Oct 2;90(19):11376-11384. doi: 10.1021/acs.analchem.8b02332. Epub 2018 Sep 19.

Abstract

Continuous sample switching is an essential process for developing an integrated platform incorporating multiple functionality with applications typically ranging from chemical to biological assays. Herein we propose a unique method of external-field-reconfigurable symmetry breaking in induced-charge electroosmosis above a simple planar bipolar electrode for continuous particle beam switching. In the proposed system, the spatial symmetry of a nonlinear electroosmotic vortex flow can be artificially reordered to achieve an asymmetric electrically floating-electrode polarization by regulating the configurations of the external ac signals, thus contributing to flexible particle beam switching. This switching system comprises an upstream flow-focusing region where particles are prefocused into a beam on the bipolar electrode by transversal electroconvective mass transfer, and a deflecting region in which the resulting particle beam is deflected to generate a steerable lateral displacement to enter the desired region via the action of an asymmetric polarization-induced reshapable electroosmotic flow stagnation line in a controllable background field gradient. A lateral particle displacement on the order of hundreds of micrometers can be achieved in a deterministic manner by varying the voltage, frequency, and inlet flow rate, thereby enabling multichannel particle switching. Furthermore, the versatility of the switching mechanism is extended by successfully accomplishing fluorescent nanoparticle beam switching, yeast cell switching, five-outlet particle switching, and simultaneous switching of two particle types. The proposed switching approach provides a promising technique for flexible electrokinetic sample preconcentration prior to any subsequent analysis and can be conveniently integrated with other micro/nanofluidic components into a complete functional on-chip platform owing to its simple electrode structure.

摘要

连续样品切换是将具有多种功能的集成平台开发的关键过程,其应用范围通常涵盖从化学到生物学分析。在此,我们提出了一种在简单的平面双极电极上方的感应电荷电动流动中实现外部场可重构对称破缺的独特方法,以用于连续的粒子束切换。在提出的系统中,通过调节外部交流信号的配置,可以人为地重新排列非线性电动涡旋流动的空间对称性,从而实现不对称的电浮电极极化,从而实现灵活的粒子束切换。该切换系统包括上游流聚焦区域,其中通过横向电动对流质量传递将粒子预聚焦到双极电极上的射束中,以及偏转区域,其中所得的粒子束通过不对称的极化诱导可重塑电动流动停滞线的作用偏转,以在可控的背景场梯度中产生可操纵的横向位移进入所需区域。通过改变电压、频率和入口流速,可以以确定的方式实现数百微米量级的横向粒子位移,从而实现多通道粒子切换。此外,通过成功实现荧光纳米粒子射束切换、酵母细胞切换、五出口粒子切换以及两种粒子类型的同时切换,扩展了切换机制的多功能性。由于其简单的电极结构,该切换方法为任何后续分析之前的灵活电动样品预浓缩提供了一种有前途的技术,并可以方便地与其他微/纳流控组件集成到完整的片上功能平台中。

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