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Phosphorescent Oxygen and Mechanosensitive Nanostructured Materials Based on Hard Elastic Polypropylene Films

机译:基于硬弹性聚丙烯薄膜的磷光氧气和机械敏感纳米结构材料

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摘要

It is well known that sensitivity of quenched phosphorescence O-2 sensors can be tuned by changing the nature of indicator dye and host polymer acting as encapsulation and quenching mediums. Here, we describe a new type of sensor materials based on nanostructured hard elastic polymeric substrates. With the example of hard elastic polypropylene films impregnated with Pt-benzoporphyrin dye, we show that such substrates enable simple one-step fabrication of O-2 sensors by standard and scalable polymer processing technologies. In addition, the resulting sensor materials show promient response to tensile drawing via changes in phosphorescence intensity and lifetime and O-2 quenching constant, K-q. The mechanosensitive, response shows reversibility and hysteresis, which are related to macroscopic changes in the nanoporous structure of the polymer. Such multifunctional materials can find use as mechanically tunable O-2 sensors, as well as strain/deformation sensors operating in a phosphorescence-lifetime-based detection mode.
机译:众所周知,可以通过改变指示剂染料的性质和用作封装和淬火介质的宿主聚合物来调节淬火磷光O-2传感器的敏感性。在这里,我们描述了一种基于纳米结构硬质环氧化合物的新型传感器材料。对于浸渍有Pt-苯并卟啉染料的硬弹性聚丙烯薄膜的实施例,我们表明这种基材通过标准和可扩展的聚合物加工技术可以简单的O-2传感器的一步制造。此外,所得到的传感器材料通过磷光强度和寿命的变化和O-2淬火常数,K-Q显示促销响应拉伸拉伸响应。机械敏感性,反应显示可逆性和滞后,其与聚合物的纳米多孔结构中的宏观变化有关。这种多功能材料可以用作机械调谐O-2传感器,以及以磷光 - 寿命的检测模式操作的应变/变形传感器。

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