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基于固定在高渗透性聚合物膜中的新型可溶性靛蓝染料测定臭氧的光化学传感器。

Optochemical sensor for determining ozone based on novel soluble indigo dyes immobilised in a highly permeable polymeric film.

作者信息

Alexy Marcin, Voss Gundula, Heinze Jürgen

机构信息

Freiburg Materials Research Center, Stefan-Meier-Strasse 21, 79104, Freiburg, Germany.

出版信息

Anal Bioanal Chem. 2005 Aug;382(7):1628-41. doi: 10.1007/s00216-005-3291-4. Epub 2005 Jun 29.

Abstract

An optochemical ozone sensor is described that has been manufactured by immobilisation of novel soluble indigo derivatives in permeable transparent polymeric films of polydimethylsiloxane-polycarbonate copolymer. From a number of investigated indigo derivatives, 4,4',7,7'-tetraalkoxyindigo 9 has been selected for optimal sensitivity and specificity of ozone detection. A linear calibration for ozone can be obtained in the range between 0.01 and 0.5 ppm. The limit of quantitation is 0.03 ppm, and the accuracy exceeds 8%. It takes about 134 s to measure the relatively low occupational exposure concentration of 0.1 ppm. A reduction of the sensor response time could be achieved through application of double-sided coated sensors instead of single-sided variants. The stability of the sensors and the effect of external parameters like relative humidity (RH), temperature and gas flow on the sensor response have been investigated. The sensor response is affected by varying the gas flow or temperature; however, humidity in the range between 0 and 90% RH does not affect sensor response. The indigo derivative 9 remained stable inside the polymeric film and no chemical reaction, crystallisation or leaching occurred during 10 months of observation. Proper choice of indicator dye and polymeric material and successful application of kinetic evaluation method for the exposure experiments determine the desired features of the sensor.

摘要

描述了一种光化学臭氧传感器,它是通过将新型可溶性靛蓝衍生物固定在聚二甲基硅氧烷 - 聚碳酸酯共聚物的可渗透透明聚合物薄膜中制造而成。在众多研究的靛蓝衍生物中,4,4',7,7'-四烷氧基靛蓝9因其对臭氧检测具有最佳的灵敏度和特异性而被选中。臭氧的线性校准范围为0.01至0.5 ppm。定量限为0.03 ppm,准确度超过8%。测量0.1 ppm的相对较低职业暴露浓度大约需要134秒。通过应用双面涂层传感器而非单面变体,可以缩短传感器的响应时间。研究了传感器的稳定性以及外部参数如相对湿度(RH)、温度和气流对传感器响应的影响。改变气流或温度会影响传感器响应;然而,0至90% RH范围内的湿度不会影响传感器响应。在10个月的观察期内,靛蓝衍生物9在聚合物薄膜内保持稳定,未发生化学反应、结晶或浸出。指示剂染料和聚合物材料的恰当选择以及动力学评估方法在暴露实验中的成功应用决定了传感器所需的特性。

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