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A Combinatorial Approach for Development of Materials for Optical Sensing of Gases

机译:一种用于气体光学传感材料开发的组合方法

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We present a combinatorial approach for development of materials for use in optical gas sensors, with oxygen being used as an exemplary target gas. Combinatorial chemistry is shown to be a promising tool for speeding up the search for new sensor materials. The method is based on the use of various polymers, solvents, indicators, plasticizers, and other additives. Solutions of the respective materials are prepared in appropriate organic solvents, and a robotic station is programmed to mix the components. Spots of the sensing materials are deposited in the wells of glass substrates resembling microtiterplates. After drying off the solvent, the sensor spots are automatically analyzed in a test stand, where they are exposed to a carrier gas containing oxygen in various concentrations. Changes in the decay time of fluorescence of the indicator probes are measured and used (along with sensor response time) as a main criterion for sensor assessment. It is shown that the combinatorial approach can reduce the time and effort needed to establish libraries of sensor materials by a factor of at least 1000. We describe in detail the device for preparation of sensor libraries and for testing the respective materials. The potential of the system is demonstrated for the characterization of optical oxygen sensors.
机译:我们提出了一种用于光学气体传感器的材料开发的组合方法,其中氧气被用作示例性目标气体。组合化学被证明是加快寻找新传感器材料的有前途的工具。该方法基于各种聚合物,溶剂,指示剂,增塑剂和其他添加剂的使用。在适当的有机溶剂中制备各种材料的溶液,并对机器人工作站进行编程以混合各组分。感测材料的斑点沉积在类似于微量滴定板的玻璃基板孔中。干燥溶剂后,将在测试台上自动分析传感器点,将其暴露于含有各种浓度氧气的载气中。测量并使用指示剂探针的荧光衰减时间的变化(以及传感器响应时间)作为传感器评估的主要标准。结果表明,组合方法可以将建立传感器材料库所需的时间和精力减少至少1000倍。我们详细介绍了用于准备传感器库和测试相应材料的设备。该系统的潜力已被证明可用于光学氧气传感器的表征。

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