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Performance of multilayered fluoropolymer surface coating for DEP surface microfluidic devices

机译:用于DEP表面微流体器件的多层含氟聚合物表面涂层的性能

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摘要

One of the key structural features of a surface microfluidic (SMF) device is the surface coating, since it directly affects both the performance and reliability of the SMF device. This work examines and compares the performance of liquid dielectrophoresis (LDEP) SMF devices, fabricated with conventional spin-coated Teflon® surface to those coated with a recently developed fluoropolymer composite coating, which have been shown to be superior for low-voltage electrowetting actuation. We have focused on SMF devices that leverage LDEP and utilize high AC voltages to actuate aqueous samples on hydrophobic surfaces and produce droplet arrays of controlled size and structure to facilitate rapid and large-scale combinatorial bio-assays. Our findings demonstrate the superior performance, robustness and reliability of the composite coating over the conventional spin-coated Teflon® coating, for repeated high-voltage, high-frequency LDEP actuations for homogenous, emulsion and variable volume aqueous sample dispensing.
机译:表面微流体(SMF)设备的关键结构特征之一是表面涂层,因为它直接影响SMF设备的性能和可靠性。这项工作检查并比较了用传统的旋涂Teflon®表面制造的液体介电电泳(LDEP)SMF器件与涂有最近开发的含氟聚合物复合涂层的那些器件的性能,这些器件已被证明在低压电润湿驱动方面具有优势。我们专注于利用LDEP并利用高AC电压在疏水性表面上驱动水性样品并产生大小和结构可控的液滴阵列的SMF设备,以促进快速,大规模的组合生物测定。我们的发现表明,对于均匀,乳化液和可变体积水性样品分配的重复高压,高频LDEP驱动,复合涂层比常规旋涂Teflon®涂层具有优越的性能,坚固性和可靠性。

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