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High throughput micropatterning of optical oxygen sensor

机译:光学氧气传感器的高通量微图案

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In this paper, we present our results from process development and characterization of optical oxygen sensors that are patterned by traditional UV lithography. An oxygen sensitive luminescent probe, platinum octaethylporphyrin (PtOEP), was encapsulated in commercially purchased photoresist (AZ5214) to form uniform thin sensor films on fused silica substrates. Plasticizer ethoxylated trimethylolpropane triacrylate (SR454) was added to the dye-photoresist sensor mixtures to improve the oxygen sensitivity. The optimum sensor mixture composition that can be patterned with maximum sensitivity was identified. The microfabrication process conditions, cell adherence and oxygen sensitivity results from patterned structures were characterized in detail. Down to 3 µm features have been fabricated on fused silica substrates using the developed techniques. The result implies the developed methods can provide a feasible way to miniaturize the optical sensor system for single cell analysis with precise control of sensor volume and response
机译:在本文中,我们介绍了通过光学氧气传感器的工艺开发和表征获得的结果,这些传感器通过传统的UV光刻技术进行了图案化。将氧敏发光探针铂八乙基卟啉(PtOEP)封装在商业购买的光刻胶(AZ5214)中,以在熔融石英基板上形成均匀的传感器薄膜。将增塑剂乙氧基化三羟甲基丙烷三丙烯酸酯(SR454)添加到染料-光致抗蚀剂传感器混合物中,以提高氧敏感性。确定了可以最大灵敏度图案化的最佳传感器混合物成分。详细表征了图案化结构的微细加工工艺条件,细胞粘附性和氧敏感性。使用已开发的技术,可以在熔融石英基板上制造低至3 µm的部件。结果表明,所开发的方法可以提供一种可行的方式,通过精确控制传感器的体积和响应,使用于单细胞分析的光学传感器系统小型化

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