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Measurement of MIPs Responses Deposited on Two SPR-POF Sensors Realized by Different Photoresist Buffer Layers

机译:通过不同的光刻胶缓冲层实现的在两个SPR-POF传感器上沉积的MIPs响应的测量

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摘要

We have used the same biomimetic receptor, a specific molecularly imprinted polymer (MIP), on two different plasmonic plastic optical fiber (POF) sensors to measure how the optical response influences the chemical response. To obtain two surface plasmon resonance (SPR) platforms, we have used two different overlayers between the core of the POF and the gold film. These overlayers, with a refractive index higher than that of the POF & x2019;s core [poly(methyl methacrylate) (PMMA)], have been used to improve the performances of the plasmonic sensor. As overlayers, we have deposited a photoresist (Microposit S1813), in two different aging conditions, namely, before and after its expiry date. In this article, we have demonstrated how the alteration in the photoresist changes the sensor & x2019;s performances and eventually the chemical response of the MIPs. More specifically, we have compared the MIPs responses of these two SPR-POF platforms in two different refractive index ranges. For this purpose, an MIP receptor already tested in the detection of perfluorinated compounds (PFAs) in water has been exploited.
机译:我们在两个不同的等离激元塑料光纤(POF)传感器上使用了相同的仿生受体,即特定的分子印迹聚合物(MIP),以测量光学响应如何影响化学响应。为了获得两个表面等离振子共振(SPR)平台,我们在POF的核心和金膜之间使用了两个不同的叠加器。这些覆盖层的折射率高于POF&x2019;芯[聚(甲基丙烯酸甲酯)(PMMA)]的折射率,已用于改善等离子体传感器的性能。作为覆盖层,我们已经在两种不同的老化条件下(即有效期之前和之后)沉积了光刻胶(Microposit S1813)。在本文中,我们证明了光刻胶中的变化如何改变传感器的性能以及最终改变MIP的化学响应。更具体地说,我们比较了这两个SPR-POF平台在两个不同折射率范围内的MIPs响应。为此,已经开发了一种在水中全氟化合物(PFA)检测中已经测试过的MIP受体。

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