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A Versatile Bonding Method for PDMS and SU-8 and Its Application towards a Multifunctional Microfluidic Device

机译:PDMS和SU-8的多功能键合方法及其在多功能微流体装置中的应用

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摘要

This paper reports a versatile and irreversible bonding method for poly(dimethylsiloxane) (PDMS) and SU-8. The method is based on epoxide opening and dehydration reactions between surface-modified PDMS and SU-8. A PDMS replica is first activated via the low-cost lab equipment, i.e., the oxygen plasma cleaner or the corona treater. Then both SU-8 and plasma-treated PDMS samples are functionalized using hydrolyzed (3-aminopropyl)triethoxysilane (APTES). Ultimately, the samples are simply brought into contact and heated to enable covalent bonding. The molecular coupling and chemical reactions behind the bonding occurring at the surfaces were characterized by water contact angle measurement and X-ray photoelectron spectroscopy (XPS) analysis. The reliability of bonded PDMS-SU-8 samples was examined by using tensile strength and leakage tests, which revealed a bonding strength of over 1.4 MPa. The presented bonding method was also applied to create a metal-SU-8-PDMS hybrid device, which integrated SU-8 microfluidic structures and microelectrodes. This hybrid system was used for the effective trapping of microparticles on-chip, and the selective releasing and identification of predefined trapped microparticles. The hybrid fabrication approach presented here, based on the PDMS-SU-8 bonding, enables multifunctional integration in complex microfluidic devices.
机译:本文报道了一种用于聚二甲基硅氧烷(PDMS)和SU-8的通用且不可逆的粘合方法。该方法基于表面改性的PDMS与SU-8之间的环氧化物开环和脱水反应。首先通过低成本的实验室设备,即氧等离子体清洁器或电晕处理器,激活PDMS复制。然后,使用水解的(3-氨基丙基)三乙氧基硅烷(APTES)对SU-8和经过等离子体处理的PDMS样品进行功能化。最终,将样品简单地接触并加热以实现共价键合。通过水接触角测量和X射线光电子能谱(XPS)分析来表征发生在表面键合后的分子偶联和化学反应。通过使用拉伸强度和泄漏测试来检查粘合的PDMS-SU-8样品的可靠性,结果表明粘合强度超过1.4 MPa。提出的键合方法也被用于创建金属SU-8-PDMS混合装置,该装置集成了SU-8微流体结构和微电极。该混合系统用于有效捕获芯片上的微粒,并选择性释放和识别预定义的捕获微粒。此处提出的基于PDMS-SU-8键合的混合制造方法可实现复杂微流体设备中的多功能集成。

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