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Luminescence Oxygen Sensor Based on a Ruthenium(II) Star Polymer Complex

机译:基于钌(II)星形聚合物配合物的发光氧传感器

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A novel quenchometric oxygen sensor based on a low polydispersity (PDI) star polymer [Ru(bpyPS_(2))_(3)](PF_(6))_(2) (bpy velence 2,2'-bipyridine, PS velence polystyrene) is reported. The synthesis, characterization, photophysics, and oxygen sensing properties are examined. Combining the polystyrene support with the oxygen sensing ruthenium complex provides much higher doping levels without microcrystallization of the complex than traditional two-component sensors. The single molecule approach also avoids sensor leaching. While the polydispersity was 1.10, indicating a very tight distribution of molecular weights, sensor heterogeneity was not completely eliminated, as the luminescence decays were still multiexponentials. The likely source of this heterogeneity and possible methods for generating more homogeneous materials are discussed.
机译:一种基于低多分散度(PDI)星型聚合物[Ru(bpyPS_(2))_(3)](PF_(6))_(2)的新型猝灭氧传感器(bpy velence 2,2'-bipyridine,PS velence聚苯乙烯)。检查了合成,表征,光物理和氧传感特性。与传统的两组分传感器相比,将聚苯乙烯载体与氧感测钌配合物结合使用可提供更高的掺杂水平,而不会使配合物发生微晶化。单分子方法还避免了传感器浸出。尽管多分散度为1.10,表明分子量分布非常紧密,但传感器的异质性并未完全消除,因为发光衰减仍然是多指数的。讨论了这种异质性的可能来源以及生成更均质材料的可能方法。

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