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Design and fabrication of enhanced polymer waveguide platforms for absorption-based optical chemical sensors

机译:用于吸收型光学化学传感器的增强型聚合物波导平台的设计和制造

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摘要

The development of mass-producible polymer waveguide chips as enhanced platforms for absorption-based optical chemical sensors employing thin colorimetric films is reported here. The chip design is based on a previously reported theoretical study relating to the optimization of the sensitivity of optical absorption-based sensors employing a single reflection configuration. Here, the theoretical analysis is extended to a multiple reflection configuration in order to determine the dependence of sensitivity on interaction length, and the findings are investigated experimentally. The existence of the optimum sensing conditions predicted by theory is demonstrated empirically by examining the pH response of polymer waveguide platforms coated with a sol-gel derived sensing layer doped with a colorimetric pH indicator. This work has major implications for the fabrication of miniaturized, disposable sensor platforms that demonstrate enhanced sensitivity when compared with those utilizing more commonly employed optical configurations.
机译:本文报道了可大规模生产的聚合物波导芯片的开发,该芯片是采用薄比色膜的基于吸收的光学化学传感器的增强平台。芯片设计基于先前报道的理论研究,该理论研究与采用单反射配置的基于光学吸收的传感器的灵敏度优化有关。在这里,理论分析扩展到多重反射配置,以便确定灵敏度对相互作用长度的依赖性,并且对发现进行了实验研究。通过检查涂覆有比色pH指示剂的溶胶-凝胶衍生的传感层涂覆的聚合物波导平台的pH响应,可以凭经验证明理论预测的最佳传感条件的存在。这项工作对微型化,一次性传感器平台的制造具有重要意义,与使用更常用的光学配置的传感器平台相比,该传感器平台显示出更高的灵敏度。

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