Numerical Analysis of the Mechanism of a Novel Microchip Based on Dielectrophoresis for Measuring Dielectric Parameters of Cells 基于介电泳的细胞介电参数测试芯片机理的数值分析
Development of Structural Design and Simulation Analysis for Dielectrophoresis Microchips 介电电泳芯片的结构设计与模拟分析进展
This paper introduced the basic principle of dielectrophoresis. 本文介绍了介电泳的基本原理。
Pattern of electrodes, frequency, concentration and voltage have been described to research the manipulation of particles by dielectrophoresis. 主要研究电极形貌,频率,浓度,电压对于微粒介电泳操控影响的情况。
Progress of Dielectrophoresis Microchip and its Application in Cell Analysis 介电电泳芯片及其在细胞分析中的应用
Recently, researchers have shown that Dielectrophoresis ( DEP) is an efficient technique to manipulate carbon nanotubes. 最近,研究人员证明了双向电泳是一种非常有效的操控碳纳米管的方法。
Study of Cell Enrichment Process by Dielectrophoresis on Dielectrophoresis Microchip with Interdigitated Arrayed Electrodes 阵列叉指式芯片研究细胞介电电泳富集过程
Microparticles manipulation based on dielectrophoresis in microsystem 面向微系统的介电泳力微纳粒子操控研究
For solid particles being the most deleterious matter in lubricating oils, the dielectrophoresis separation process system for removing the solid particles was established. 针对润滑油中危害最大物质之一的固体微粒,建立了润滑油介电动力学分离流态实验装置系统,研究了该方法主要工艺技术参数:电场强度和流速等。
Studies on Dielectrophoresis of Aged and Young Erythrocytes 老化及年青红细胞电介质电泳的研究
Study on dielectrophoresis separation process of solid particles in lubricating oils 润滑油中固体微粒介电动力学分离方法的研究
Research on bio-particle separation chip based on dielectrophoresis 基于介电泳的生物粒子分离芯片
Dielectrophoresis of erythrocyte using microchip electrode arrays 微芯片电极红细胞电介质电泳现象
The migration of phenanthrene in soil by non-uniform electric field was carried out mainly in the way of dielectrophoresis. 非均匀电场对土壤中菲的迁移主要是以介电迁移方式进行的。
The element based on ZnO nanorods was fabricated by building certain numbers of ZnO nanorods through filtration of ZnO nanorods, preparation of Al counter-electrodes and the dielectrophoresis process. An excellent bidirectional rectifying effect was shown by the testing results. 通过ZnO纳米棒的过滤、A1对电极的制备和介电电泳过程来搭建确定数目的ZnO纳米棒,制备出ZnO基元器件,测试表明ZnO基元器件具有良好的电性能。
This paper summarizes development of the dielectrophoresis technology and its application in all fields. 综述了介电泳技术的发展历程及其在各个领域的研究和应用情况。
Dielectrophoresis ( DEP) method was widely used in separation, transportation, trapping or sorting of micro/ nano particles in the fluids, the key for realizing the dielectrophoretic manipulation was to design and fabricate micro-electrode array for producing the required distribution of the electric field. 介电泳方法被广泛地应用于流体中微纳颗粒的分离、输运、捕捉及分类等各种操纵,实现介电泳操纵的关键是设计并制备出产生所需的电场分布的微电极阵列。
Dielectrophoresis ( DEP) has been demonstrated to be a promising technique for mass-scale assembly of CNTs and manipulations. 介电泳用于大规模组装和操控碳纳米管已被证实是一种非常有前途的技术。