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Metallization of Organically Modified Ceramics for Microfluidic Electrochemical Assays

机译:用于微流体电化学分析的有机改性陶瓷的金属化

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摘要

Organically modified ceramic polymers (ORMOCERs) have attracted substantial interest in biomicrofluidic applications owing to their inherent biocompatibility and high optical transparency even in the near-ultraviolet (UV) range. However, the processes for metallization of ORMOCERs as well as for sealing of metallized surfaces have not been fully developed. In this study, we developed metallization processes for a commercial ORMOCER formulation, Ormocomp, covering several commonly used metals, including aluminum, silver, gold, and platinum. The obtained metallizations were systematically characterized with respect to adhesion (with and without adhesion layers), resistivity, and stability during use (in electrochemical assays). In addition to metal adhesion, the possibility for Ormocomp bonding over each metal as well as sufficient step coverage to guarantee conductivity over topographical features (e.g., over microchannel edges) was addressed with a view to the implementation of not only planar, but also three-dimensional on-chip sensing elements. The feasibility of the developed metallization for implementation of microfluidic electrochemical assays was demonstrated by fabricating an electrophoresis separation chip, compatible with a commercial bipotentiostat, and incorporating integrated working, reference, and auxiliary electrodes for amperometric detection of an electrochemically active pharmaceutical, acetaminophen.
机译:由于有机改性的陶瓷聚合物(ORMOCER)固有的生物相容性和较高的光学透明性,即使在近紫外(UV)范围内,也已引起了生物微流体应用的广泛兴趣。但是,ORMOCER的金属化以及金属化表面的密封工艺尚未得到充分开发。在这项研究中,我们为商用ORMOCER配方Ormocomp开发了金属化工艺,该工艺涵盖了几种常用金属,包括铝,银,金和铂。对所获得的金属镀层的粘附性(具有和不具有粘附层),电阻率和使用过程中的稳定性(在电化学分析中)进行了系统地表征。除了金属附着力之外,还考虑了不仅在平面上,而且在三层上实现了在每种金属上进行Ormocomp键合的可能性以及足够的台阶覆盖率,以保证在形貌特征(例如,在微通道边缘)上的电导率。尺寸的片上传感元件。通过制造与商业双恒电位仪兼容的电泳分离芯片,并结合集成的工作电极,参比电极和辅助电极用于电化学活性药物对乙酰氨基酚的安培检测,证明了开发的金属化方法用于实施微流体电化学分析的可行性。

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