Realizing Temperature-Controlled Digital Microfluidic Chips with Versatile Microelectrodes

Jen-Hung Wei, W. Hsu, S. Fan
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引用次数: 6

Abstract

Droplet heating and pumping were performed on a versatile microelectrode by selectively applying appropriate electric signals. The designed electrode is in a meander-line shape and covered by an insulator. On the one hand, when a potential difference is applied along the electrode, power dissipated by the resistance of the electrode causes droplet heating. On the other hand, when an electric field exists across the insulator above the electrode, the charges stored in the capacitor alter the surface wettability and pump droplet. Manipulated droplets were placed between parallel plates with passivated versatile microelectrodes on the bottom plate and a Teflon-coated blank ITO on the top plate. We successfully applied a DC voltage at the two terminals of the meander-line electrode to heat up the electrode as well as the droplet above. Besides, pumping droplets by EWOD was demonstrated by applying a proper AC voltage between the electrode on the bottom plate and the ITO on the top plate. With the proposed versatile microelectrode design and actuation scheme, heating and EWOD were obtained on an identical electrode. A digital microfluidic chip capable of droplet manipulation by EWOD and droplet heating was presented.
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用多用途微电极实现温控数字微流控芯片
通过选择性地施加适当的电信号,在多功能微电极上进行液滴加热和泵送。所设计的电极呈曲线形,并由绝缘体覆盖。一方面,当沿电极施加电位差时,由电极电阻耗散的功率引起液滴加热。另一方面,当电场存在于电极上方的绝缘体上时,储存在电容器中的电荷改变了表面润湿性和泵液滴。被操纵的液滴被放置在平行板之间,底部是钝化的多功能微电极,顶部是特氟龙涂层的空白ITO。我们成功地在弯曲线电极的两端施加直流电压来加热电极以及上面的液滴。此外,通过在底板电极和顶板ITO之间施加适当的交流电压,证明了EWOD泵送液滴。利用所提出的多用途微电极设计和驱动方案,在同一电极上获得了加热和EWOD。提出了一种能够通过EWOD和液滴加热操作液滴的数字微流控芯片。
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