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Platinum black electrodeposited thread based electrodes for dielectrophoretic assembly of microparticles

机译:铂黑电沉积线基电极用于微粒的电泳分离

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摘要

We report dielectrophoretic (DEP) assembly of biological cells and microparticles using platinum-black electrodeposited conductive textile fiber. The three-dimensional conductive structures with high aspect ratios were found to facilitate high electric field regions, as revealed by scanning electron microscope characterization. The effective conducting area (Aeff) and its stability of thread electrodes were estimated using electrochemical methods. Potential of platinum black electrodeposited thread as 3-D electrodes for creating high gradient electrical field for dielectrophoretic assembly of microspheres and Saccharomyces cerevisiae (yeast cells) into 1D and two-dimensional structures over long ranges under the application of low voltages (4–10 Vpp) has been demonstrated. The formation of highly ordered pearl chains of microparticles using thread electrodes when subjected to dielectrophoresis (DEP) has been discussed in detail.
机译:我们报告了使用铂黑电沉积导电纺织纤维的生物细胞和微粒的介电泳(DEP)组装。如扫描电子显微镜表征所揭示的,发现具有高纵横比的三维导电结构有助于高电场区域。使用电化学方法估计线电极的有效导电面积(Aeff)及其稳定性。铂黑电沉积线作为3-D电极的潜力,可在低电压(4-10 Vpp)的作用下,在长距离内将微球和酿酒酵母(酵母细胞)介电电泳成长距离的一维和二维结构,从而产生高梯度电场)已被演示。当进行介电泳(DEP)时,使用线电极形成微粒的高度有序的珍珠链已得到详细讨论。

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