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FABRICATION OF DIELECTROPHORETIC MICROFLUIDIC DEVICE

机译:双电微流体装置的制造

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摘要

Technological needs of the recent times require the improvement in micro-scale devices that manipulate the bioparticles like cells, bacteria, viruses, DNA, proteins, etc. Such devices have diverse and widespread applications in biomedical, drug delivery and diagnostics for separating, trapping, sorting and mixing of particles. Dielectrophoresis (DEP) is one of the techniques used for manipulating the particles in a nonuniform electric field. In the present study, fabrication and characterization of microflu-idic device for DEP is analyzed and experimented. An overview of fabrication techniques which can be used for making of DEP device is provided with experimental details. DEP microfluidic device is fabricated by preparing channels and microelectrodes on PDMS and glass materials respectively. Oxygen plasma treatment has been used for bonding the PDMS channel and micro-electrode patterned glass substrate. Further experiments are conducted to demonstrate the DEP principle with polystyrene microbeads. The movement of microbeads towards the high electric field strengths at 12Vpp and 10 MHz frequency is observed. Characterizing equipments like ellipsometer, profilometer, scanning electron microscopy, contact angle measurement systems were used for measuring oxide layer thickness, width and depth of the channels, surface characteristics etc., during fabrication.
机译:近期的技术需求要求对操纵诸如细胞,细菌,病毒,DNA,蛋白质等生物微粒的微型设备进行改进。此类设备在生物医学,药物输送和诊断中用于分离,诱捕,颗粒的分类和混合。介电电泳(DEP)是用于在非均匀电场中处理粒子的技术之一。在本研究中,分析和实验了用于DEP的微流体装置的制造和表征。实验细节概述了可用于制造DEP器件的制造技术。 DEP微流体装置是通过分别在PDMS和玻璃材料上制备通道和微电极来制造的。氧等离子体处理已经用于粘结PDMS通道和微电极图案化玻璃基板。进行了进一步的实验以证明聚苯乙烯微珠的DEP原理。观察到微珠在12Vpp和10 MHz频率下向高电场强度的运动。诸如椭圆仪,轮廓仪,扫描电子显微镜,接触角测量系统等表征设备用于在制造过程中测量氧化物层的厚度,通道的宽度和深度,表面特性等。

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