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Use of Luminescent Gold Compounds in the Design of Thin-Film Oxygen Sensors

机译:发光金化合物在薄膜氧气传感器设计中的使用

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The use of two gold compounds incorporated into thin plastic films as luminescence quenching oxygen sensors is described. The films are sensitive both to gaseous oxygen and to oxygen dissolved in nonaqueous media such as ethanol. The luminescence quenching of these sensors by oxygen obeys the Stern-Volmer equation and Stern-Volmer constants of 5.35 × 10↑(-3) and 0.9× 10↑(-3) Torr↑(-1) are found, respectively, for the two dyes in a polystyrene polymer matrix. The sensitivity of the films is strongly influenced by the nature of the polymer matrix, and greatest sensitivity was found in systems based on the polymers polystyrene or cellulose acetate butyrate. Sensitivity was not found to be temperature dependent though raising the temperature from 15 to 50℃ did result in a slight decrease in emission intensity and a hypsochromic shift in the emission wavelength. The rate of response and recovery of the sensors can be increased either by decreasing film thickness or by increasing the operating temperature. The operational and storage stability of these films is generally good though exposure to light should be avoided as one of the dyes tends to undergo photobleaching, probably due to a photoinduced ligand substitution reaction.
机译:描述了结合到塑料薄膜中的两种金化合物作为发光猝灭氧传感器的用途。该膜对气态氧和溶解在非水介质如乙醇中的氧都敏感。氧对这些传感器的发光猝灭遵循Stern-Volmer方程,对于这些传感器,Stern-Volmer常数分别为5.35×10↑(-3)和0.9×10↑(-3)Torr↑(-1)。聚苯乙烯聚合物基质中的两种染料。薄膜的敏感性受到聚合物基质性质的强烈影响,在基于聚合物聚苯乙烯或醋酸丁酸纤维素的体系中发现了最大的敏感性。尽管将温度从15℃升高到50℃确实导致了发射强度的轻微降低和发射波长的色移,但灵敏度并未发现与温度有关。传感器的响应速度和恢复速度可以通过减小薄膜厚度或通过提高工作温度来提高。这些膜的操作和存储稳定性通常很好,尽管应避免暴露于光下,因为其中一种染料可能会发生光致漂白,这可能是由于光诱导的配体取代反应引起的。

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