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用于气相和溶解氧检测的基于结构集成有机发光器件的传感器。

Structurally integrated organic light emitting device-based sensors for gas phase and dissolved oxygen.

作者信息

Shinar Ruth, Zhou Zhaoqun, Choudhury Bhaskar, Shinar Joseph

机构信息

Microelectronics Research Center, Iowa State University, Ames, IA 50011, United States.

出版信息

Anal Chim Acta. 2006 May 24;568(1-2):190-9. doi: 10.1016/j.aca.2006.01.050. Epub 2006 Feb 21.

Abstract

A compact photoluminescence (PL)-based O2 sensor utilizing an organic light emitting device (OLED) as the light source is described. The sensor device is structurally integrated. That is, the sensing element and the light source, both typically thin films that are fabricated on separate glass substrates, are attached back-to-back. The sensing elements are based on the oxygen-sensitive dyes Pt- or Pd-octaethylporphyrin (PtOEP or PdOEP, respectively), which are embedded in a polystyrene (PS) matrix, or dissolved in solution. Their performance is compared to that of a sensing element based on tris(4,7-diphenyl-l,10-phenanthroline) Ru II (Ru(dpp)) embedded in a sol-gel film. A green OLED light source, based on tris(8-hydroxy quinoline Al (Alq3), was used to excite the porphyrin dyes; a blue OLED, based on 4,4'-bis(2,2'-diphenylviny1)-1,1'-biphenyl, was used to excite the Ru(dpp)-based sensing element. The O2 level was monitored in the gas phase and in water, ethanol, and toluene solutions by measuring changes in the PL lifetime tau of the O2-sensitive dyes. The sensor performance was evaluated in terms of the detection sensitivity, dynamic range, gas flow rate, and temperature effect, including the temperature dependence of tau in pure Ar and O2 atmospheres. The dependence of the sensitivity on the preparation procedure of the sensing film and on the PS and dye concentrations in the sensing element, whether a solid matrix or solution, were also evaluated. Typical values of the detection sensitivity in the gas phase, S(g) identical with tau(0% O2)/tau(100% O2), at 23 degrees C, were approximately 35 to approximately 50 for the [Alq3 OLED[/[PtOEP dye] pair; S(g) exceeded 200 for the Alq3/PdOEP sensor. For dissolved oxygen (DO) in water and ethanol, S(DO) (defined as the ratio of tau in de-oxygenated and oxygen-saturated solutions) was approximately 9.5 and approximately 11, respectively, using the PtOEP-based film sensor. The oxygen level in toluene was measured with PtOEP dissolved directly in the solution. That sensor exhibited a high sensitivity, but a limited dynamic range. Effects of aggregation of dye molecules, sensing film porosity, and the use of the OLED-based sensor arrays for O2 and multianalyte detection are also discussed.

摘要

描述了一种基于紧凑光致发光(PL)的氧气传感器,该传感器利用有机发光器件(OLED)作为光源。该传感器装置在结构上是集成的。也就是说,传感元件和光源(两者通常是在单独的玻璃基板上制造的薄膜)背靠背连接。传感元件基于对氧敏感的染料铂或钯八乙基卟啉(分别为PtOEP或PdOEP),它们嵌入聚苯乙烯(PS)基质中或溶解在溶液中。将它们的性能与基于嵌入溶胶 - 凝胶膜中的三(4,7 - 二苯基 - 1,10 - 菲咯啉)钌II(Ru(dpp))的传感元件的性能进行比较。基于三(8 - 羟基喹啉铝(Alq3))的绿色OLED光源用于激发卟啉染料;基于4,4'-双(2,2'-二苯基乙烯基)-1,1'-联苯的蓝色OLED用于激发基于Ru(dpp)的传感元件。通过测量对氧敏感染料的PL寿命τ的变化,在气相以及水、乙醇和甲苯溶液中监测氧气水平。根据检测灵敏度、动态范围、气体流速和温度效应(包括在纯氩气和氧气气氛中τ的温度依赖性)评估传感器性能。还评估了灵敏度对传感膜制备过程以及传感元件(无论是固体基质还是溶液)中PS和染料浓度的依赖性。在23摄氏度下,气相中检测灵敏度的典型值S(g)(定义为τ(0% O2)/τ(100% O2)),对于[Alq3 OLED]/[PtOEP染料]对约为35至约50;Alq3/PdOEP传感器的S(g)超过200。对于水中和乙醇中的溶解氧(DO),使用基于PtOEP的薄膜传感器时,S(DO)(定义为脱氧和氧饱和溶液中τ的比率)分别约为9.5和约11。用直接溶解在溶液中的PtOEP测量甲苯中的氧气水平。该传感器具有高灵敏度,但动态范围有限。还讨论了染料分子聚集、传感膜孔隙率以及基于OLED的传感器阵列用于氧气和多分析物检测的影响。

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