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低电压芯片电泳过程中流场的模拟计算和分析
引用本文:徐溢,温志渝,李霞,任峰,胡小国. 低电压芯片电泳过程中流场的模拟计算和分析[J]. 传感技术学报, 2007, 20(8): 1701-1705
作者姓名:徐溢  温志渝  李霞  任峰  胡小国
作者单位:重庆大学微系统研究中心和光电工程及系统教育部重点实验;重庆大学化学化工学院,重庆,400030;重庆大学微系统研究中心和光电工程及系统教育部重点实验;重庆大学化学化工学院,重庆,400030
基金项目:国家自然科学基金,国家高技术研究发展计划(863计划),国家科技部国际科技合作项目,重庆市自然科学基金
摘    要:本文基于一种阵列电极的低工作电压电泳芯片分离模型,在其中微管道的电场模拟的基础上,结合微流体动力学特性,以分离管道侧壁排布电极并等间距施加电压,建立电泳芯片低工作电压分离过程的流场模型,利用CoventorWare软件分析单组分和双组分试样在微分离管道中流场的模拟,发现组分在常规电压和低工作电压两种分离模式下,其迁移速度近似相等;对于双组分,分离电压可大大降低同时,还可保证原来的分离度,低电压电泳过程中,工作电压可降低至30 V.证实了阵列电极和运动梯度场实现低电压电泳的可行性和有效性.

关 键 词:低电压电泳芯片  运动场模型  电极阵列  CoventorWare模拟分析
文章编号:1004-1699(2007)08-1701-05
收稿时间:2006-12-06
修稿时间:2006-12-062007-12-13

Fluidic Field Simulation of Separation Mode on Low Voltage Electrophoresis Chip by CoventorWare
XU Yi,WEN Zhiyu,LI Xi,RenFeng,HuXiaogu. Fluidic Field Simulation of Separation Mode on Low Voltage Electrophoresis Chip by CoventorWare[J]. Journal of Transduction Technology, 2007, 20(8): 1701-1705
Authors:XU Yi  WEN Zhiyu  LI Xi  RenFeng  HuXiaogu
Affiliation:1Microsystem Research Center of Chongqing University and Key laboratory of Optoelectronic Technology and Systems, 2 Chem&Chem Engineering College, Chongqing University
Abstract:On the basis of the theory model of low voltage separation on CE chip with arrayed electrodes along both sides of the micro-channels, and electric fields simulating results in micro channel by ANSYS software and fluidic dynamics, solid model of low voltage electrophoresis with channel side arrayed electrodes was established. Low voltage was applied to arryed electrodes in the moving way with equal distance each time. CoventorWare software were used to simulate and calculate the fluidic moving in micro separating channel and the process of electrophoresis separation. Taking the signal and double components as samples in low voltage CE chip, the simulating results shown that component in the fluid moved at the almost same speed under the common CE and low voltage CE modes. While the good resolution was got under low voltage CE modes, the voltage could even decrease to 30 V. Furthermore, computer simulation results of the flow field had proved the possibility and practicality of the low voltage CE chip with side arrayed electrodes.
Keywords:low voltage electrophoresis chip   moving electric field model   electrode array   CoventorWare simulation
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