Civil & Environmental Engineering Department, Tufts University, Medford, MA, 02155, USA,
Environ Monit Assess. 2014 Jan;186(1):415-20. doi: 10.1007/s10661-013-3386-x. Epub 2013 Aug 25.
A phenosafranine-containing Nafion film attached to the distal end of a fiber-optic probe forms a functional redox-sensitive optical sensor. The synthetic cationic photoactive dye phenosafranine, 3,7-diamino-5-phenylphenazinium chloride, responds with changes in light absorbance between its oxidized and reduced forms. This optical property persists when phenosafranine is sorbed into Nafion, a perfluorosulfonate anionic film. Optical properties of the sensor are similar to those seen by others in solution. At high redox conditions, such as an open nitrogen-purged aqueous pH 6.5 solution, optical absorbance of phenosafranine is high, while at low redox conditions, such as an aqueous pH 6.5 iron(II) solution, optical absorbance of phenosafranine is low. Titration of a closed pH 6.5 aqueous solution with a standard iron(II) solution lowers redox potential in a predictable manner and can be followed by the optical redox sensor in parallel with a commercial redox potential electrode.
一种含有 phenosafranine 的 Nafion 薄膜附着在光纤探头的远端,形成一个功能氧化还原敏感的光学传感器。合成的阳离子光活性染料 phenosafranine,3,7-二氨基-5-苯基吩嗪氯化物,在其氧化和还原形式之间的光吸收变化做出响应。当 phenosafranine 被吸附到 Nafion(一种全氟磺酸阴离子膜)中时,这种光学性质仍然存在。传感器的光学性质与在溶液中观察到的其他性质相似。在高氧化还原条件下,例如氮气吹扫的开放 pH 6.5 水溶液,phenosafranine 的光吸收很高,而在低氧化还原条件下,例如 pH 6.5 的铁(II)水溶液,phenosafranine 的光吸收很低。用标准铁(II)溶液滴定封闭的 pH 6.5 水溶液以可预测的方式降低氧化还原电位,并可与商业氧化还原电位电极平行使用光学氧化还原传感器进行跟踪。