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Improving the dielectric properties of an electrowetting-on-dielectric microfluidic device with a low-pressure chemical vapor deposited Si3N4 dielectric layer

机译:使用低压化学气相沉积的Si3N4介电层改善介电电润湿微流体器件的介电性能

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摘要

Dielectric breakdown is a common problem in a digital microfluidic system, which limits its application in chemical or biomedical applications. We propose a new fabrication of an electrowetting-on-dielectric (EWOD) device using Si3N4 deposited by low-pressure chemical vapor deposition (LPCVD) as a dielectric layer. This material exhibits a greater relative permittivity, purity, uniformity, and biocompatibility than polymeric films. These properties also increase the breakdown voltage of a dielectric layer and increase the stability of an EWOD system when applied in biomedical research. Medium droplets with mouse embryos were manipulated in this manner. The electrical properties of the Si3N4 dielectric layer—breakdown voltage, refractive index, relative permittivity, and variation of contact angle with input voltage—were investigated and compared with a traditional Si3N4 dielectric layer deposited as a plasma-enhanced chemical vapor deposition to confirm the potential of LPCVD Si3N4 applied as the dielectric layer of an EWOD digital microfluidic system.
机译:介电击穿是数字微流体系统中的常见问题,这限制了它在化学或生物医学应用中的应用。我们提出一种新的电介质上电润湿(EWOD)装置的制造方法,该装置使用通过低压化学气相沉积(LPCVD)沉积的Si3N4作为介电层。该材料比聚合物膜具有更大的相对介电常数,纯度,均匀性和生物相容性。当应用于生物医学研究中时,这些性质还增加了介电层的击穿电压并增加了EWOD系统的稳定性。具有小鼠胚胎的中等液滴以这种方式进行操作。研究了Si3N4介电层的电学特性(击穿电压,折射率,相对介电常数以及接触角随输入电压的变化),并将其与传统的Si3N4介电层进行了等离子增强化学气相沉积,以确认其电势。 LPCVD Si3N4用作EWOD数字微流体系统的介电层的示意图。

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