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SU-8 guiding layer for love wave devices

机译:SU-8导波装置的导向层

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摘要

SU-8 is a technologically important photoresist used extensively for the fabrication of microfluidics and MEMS, allowing high aspect ratio structures to be produced. In this work we report the use of SU-8 as a Love wave sensor guiding layer which allows the possibility of integrating a guiding layer with flow cell during fabrication. Devices were fabricated on ST-cut quartz substrates with a single-single finger design such that a surface skimming bulk wave (SSBW) at 97.4 MHz was excited. SU-8 polymer layers were successively built up by spin coating and spectra recorded at each stage; showing a frequency decrease with increasing guiding layer thickness. The insertion loss and frequency dependence as a function of guiding layer thickness was investigated over the first Love wave mode. Mass loading sensitivity of the resultant Love wave devices was investigated by deposition of multiple gold layers. Liquid sensing using these devices was also demonstrated; water-glycerol mixtures were used to demonstrate sensing of density-viscosity and the physical adsorption and removal of protein was also assessed using albumin and fibrinogen as model proteins.
机译:SU-8是具有技术重要性的光致抗蚀剂,广泛用于制造微流体和MEMS,从而可以生产高深宽比的结构。在这项工作中,我们报告了将SU-8用作Love波传感器的引导层,这使在制造过程中将引导层与流通池集成成为可能。用单指设计在ST切割石英衬底上制造器件,从而激发97.4 MHz的表面掠过体波(SSBW)。通过旋涂相继建立SU-8聚合物层,并在每个阶段记录光谱。显示频率随着引导层厚度的增加而降低。在第一个Love波模上研究了插入损耗和频率依赖性与引导层厚度的关系。通过沉积多个金层,研究了所得Love波器件的质量负载敏感性。还演示了使用这些设备进行液体感测。水-甘油混合物用于证明密度-粘度的感测,并且还使用白蛋白和纤维蛋白原作为模型蛋白质来评估蛋白质的物理吸附和去除。

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