...
首页> 外文期刊>Sensors and Actuators >Combined alternating current electrothermal and dielectrophoresis-induced tunable patterning to actuate on-chip microreactions and switching at a floating electrode
【24h】

Combined alternating current electrothermal and dielectrophoresis-induced tunable patterning to actuate on-chip microreactions and switching at a floating electrode

机译:结合交流电热和介电电泳引起的可调图案,以激活片上微反应并在浮置电极上切换

获取原文
获取原文并翻译 | 示例
           

摘要

A unique platform to fabricate tunable micropatterns at an electrically floating electrode has been developed via an enhanced combination of dielectrophoresis (DEP) and alternating current electrothermal (ACET) processes. The design of the platform uses two pairs of driving electrodes to generate a tunable electric field at a floating electrode, which in turn allows for the formation of patterned cells and fluids with desired features. By regulating the input configuration of the ac signals, yeast cells can be either patterned at the field stagnant region by a synergistic combination of negative DEP and ACET flow, or partially captured at the electrode edges subjected to a strong positive DEP, to form varying cell patterns. Additionally, nanoparticles were used to characterize the ACET-based flow pattern formation. Furthermore, the patterns were successfully exploited as an electrokinetic actuator to actuate continuous droplet switching, fluid mixing and microreactions. Implementing the simultaneous nanoparticle synthesis and guiding demonstrated that the combined field pattern is capable of manipulating both particulate samples and fluids. The proposed micropatterning technique may provide new insights for sample manipulation, on-chip function development and integration with other analytical components (i.e., biochemical sensors, chemical detectors, cell culture bioreactors) owing to a facile operation, easy integration and multifunctionality.
机译:通过介电电泳(DEP)和交流电热(ACET)工艺的增强结合,已经开发出了在电浮电极上制造可调谐微图案的独特平台。平台的设计使用两对驱动电极在浮动电极上产生可调电场,从而可以形成具有所需特征的图案化细胞和流体。通过调节ac信号的输入配置,可以通过负DEP和ACET流动的协同组合在停滞区域对酵母细胞进行构图,或者在经受强正DEP的电极边缘部分捕获酵母细胞,从而形成变化的细胞模式。另外,纳米颗粒用于表征基于ACET的流型形成。此外,该模式已成功地用作电动致动器来致动连续的液滴切换,流体混合和微反应。实施同时的纳米粒子合成和指导表明,结合的场模式能够操纵颗粒样品和流体。由于操作简便,易于集成和多功能性,所提出的微图案技术可为样品处理,片上功能开发以及与其他分析组件(即生化传感器,化学检测器,细胞培养生物反应器)的集成提供新的见解。

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