介电电泳,dielectrophoresis
1)dielectrophoresis['daii,lektr?uf?'ri:sis]介电电泳
1.Application of dielectrophoresis in biochip manipulated by electromagnetic field;介电电泳在电磁操作生物芯片技术中的应用
2.Samples with CNTs assembled between a pair of Au electrodes by dielectrophoresis were respectively annealed at the temperature of 200℃,300℃ and 400℃ for an hour and then cooled naturally.本文采用介电电泳在金属对电极上组装碳纳米管,形成金属-碳纳米管-金属结构。
3.Using the principles of dielectrophoresis and electroporation, the instrument can be used to manipulate cells and carry out cell fusion.同时,研究开发了细胞电融合仪,可以与芯片集成为高通量细胞电融合系统,并利用介电电泳和细胞电致穿孔原理实现细胞操控和电融合。
英文短句/例句

1.Research on the Effectiveness of Dc-Dielectrophoretic Separation of Microparticle by Size微米颗粒直流介电电泳分离器性能的研究
2.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
3.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
4.Development of Enrichment and Separation of Biochemical Sample by Delectrophoresis on Microchip生化样本的芯片介电电泳富集和分离研究进展
5.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
6.Research of Cell Concentration and Separation on the Dielectrophoretic Chip with Arrayed Opposite Electrodes阵列式对电极介电电泳芯片及其用于细胞分离富集研究
7.Control and Acquisition Platform for Travelling Wave Dielectric Electrophoresis Chip Based on SOPC基于SoPC的行波介电电泳芯片控制与采集平台设计
8.Construction of Biochip Based on Dielectrophoresis and Its Application Research in Cellular Assays;基于介电电泳原理的生物芯片的构建及其在细胞分析中的应用研究
9.Di-electrophoresis assembly and fabrication of SWCNT field-effect transistorSWCNT场效应晶体管的介电泳装配与制造
10.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
11.Several test methods of performances of the cathodic electrophoresis paints are introduced.介绍了阴极电泳漆的几种性能测试方法。
12.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
13.Preparation of Mesoporous TiO_2/Single Wall Carbon Nanotubes Thin Film Through Electrophoretic Deposition电泳沉积法制备介孔TiO_2/单壁碳纳米管薄膜
14.pulse alternative field gel electrophoresis脉冲交变电场凝胶电泳
15.PREPARATION OF THE BIOGLASS/HYDROXY APATITE COATING BY ELECTROPHORESIS CODEPOSITION IN ACETIC ACID MEDIUM冰醋酸介质中电泳共沉积制备生物玻璃/羟基磷灰石涂层
16.Study on Chiral Separation of Cetirizine Enantiomers by Capillary Eletrophoresis in the Media of Non-cyclic Saccharides;非环化糖类介质中西替利嗪对映体的毛细管电泳手性拆分研究
17.Using Non-cyclic Polysaccharide as Chiral Additive for the Separation of Citalopram Enantiomers in Capillary Electrophoresis;非环化多糖介质毛细管电泳手性拆分西酞普兰对映体
18.Manipulation of Nanomaterials by Dielectrophoresis and Its Application in Micro/nanosensor Fields;介电泳操控纳米材料及其在微纳传感器中的应用
相关短句/例句

dielectrophoresis['daii,lektr?uf?'ri:sis]介电泳
1.Molecular dynamics simulation for dielectrophoresis of nanoparticles;纳米粒子介电泳的分子动力学模拟
2.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
3.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。
3)running buffer电泳介质
1.The effects of running buffer on reproducibility of the migration time in the modes of capillary zone electrophoresis (CZE) and micellar electrokinetic capillary chromatography(MECC) were investigated.以电泳介质为研究对象,在毛细管区带电泳(CZE)和胶束电动毛细管色谱(MECC或MEKC)两种电泳模式下,探讨了电泳介质中各组分浓度、冲洗程序、电泳介质在实验中发生的变化对溶质迁移时间重现性的影响。
4)dielectrophoretic force介电泳力
5)dielectrophoresis['daii,lektr?uf?'ri:sis]电介质电泳
1.The paper reports a dielectrophoresis device based on a microchip of castellated interdigitated microelectrode arrays.本文报告了一种基于微芯片叉指状微电极阵列的电介质电泳装置,并对人体外周血液红细胞的电动力学特性进行了初步探索。
2.Biological dielectrophoresis is defined as the translational motion of neutralbioparticles caused by polarization in nonuniform electric field.生物电介质电泳(Biological Dielectrophoresis)是指生物微粒在非均匀电场中,因 介质极化而受电场力的作用,产生宏观位移运动的现象。
6)nano-dielectrophoresis纳米介电泳
延伸阅读

介电松弛分子式:CAS号:性质:又称介电弛豫。电介质在外电场作用(或移去)后,从瞬时建立的极化状态达到新的极化平衡态的过程。电介质极化趋于稳态的时间称为松弛时间。松弛时间与极化机制密切相关,是造成介质材料存在介质损耗的原因之一。通过研究高分子材料的介电松弛,不仅可以获得其松弛时间,而且因为在实际测量中,往往要测量介电谱,从而通过数学处理后可获得分子间相互作用的状态,根据高频侧α值与低频侧α值的差确定曲线宽度,曲线宽表示分子间相互作用大,曲线窄表示分子间相互作用小。