...
首页> 外文期刊>Nanoscale >Induced charge electro-osmotic particle separation
【24h】

Induced charge electro-osmotic particle separation

机译:感生电荷electro-osmotic粒子分离

获取原文
获取原文并翻译 | 示例

摘要

Vortex-based separation is a promising method in particle-particle separation and has only been demonstrated theoretically some years ago. To date, a continuous-flow separation device based on vortices has not been conceived because many known vortices were either unstable or controlling them lacked precision. Electro-convection from induced charge electro-osmosis (ICEO) has advantages, such as adjustable flow profiles, long-range actuation, and long-lived vortices, and offers an alternative means of particle separation. We found though a different ICEO focusing behaviour of particles whereby particles were trapped and concentrated in two vortex cores. Encouraged by these features of ICEO vortices, we proposed a direct method for particle separation in continuous flow. In various experiments, we first characterized the ICEO-induced focusing performances of various kinds of particle samples in a straight channel embedded with an individual central bipolar electrode, presenting a justifiable explanation. Second, the combined dependences of ICEO particle separation on the sample size and mass density were investigated. Third, an application to cell purification was performed in which we obtained a purity surpassing 98%. Finally, we investigated the ICEO characteristics of nanoparticles, exploiting our method in isolating nanoscale objects by separating 500 nm and 5 m polystyrene beads, gaining clear separation. Certain features of this method, such as having ease of operation, simple structure, and continuous flow, and being prefocusing free and physical property-based, indicate its good potential in tackling environmental monitoring, cell sorting, chemical analysis, isolation of uniform-sized graphene and transesterification of micro-algal lipids to biodiesel.
机译:Vortex-based分离是一种很有前途的方法粒子与粒子之间的分离和只有理论上证明了一些年前。日期、连续流分离设备的基础在漩涡尚未受孕,因为许多已知不稳定或漩涡控制他们缺乏精度。Electro-convection从感生电荷透过电渗透(临时)的优势,例如可调节流配置文件、远程驱动,和长寿的漩涡,提供了一个颗粒分离的替代手段。发现,虽然不同的临时集中行为的粒子,粒子被困集中在两个涡核。临时漩涡的这些特性,我们提出了一个直接法的粒子分离连续流。ICEO-induced集中的特征表演各种粒子的样本在一个直接嵌入个人频道中央双极电极,呈现合理的解释。依赖性的临时粒子分离样本大小和质量密度。第三,应用细胞净化我们获得了纯度超过98%。纳米粒子的特点,利用我们方法分离纳米对象聚苯乙烯珠分离500 nm和5米,获得清晰的分离。这种方法,如易于操作,结构简单、连续流,定焦自由和物理属性,显示其良好的潜在的解决环境监测、细胞分类,化学分析,隔离的统一尺度石墨烯和酯交换micro-algal脂质生物柴油。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号