发光
共价键
化学
钌
航程(航空)
无机化学
光电子学
材料科学
有机化学
催化作用
复合材料
作者
Ya Jie Knöbl,Maximino Bedoya,Alexander Farquharson,Patrick Courtney,Guillermo Orellana
标识
DOI:10.1016/j.snb.2024.136960
摘要
To overcome the limitations of optical pH sensors, the response of which is just ca. one pH unit around the p K a value of the indicator dye and capitalize on the advantages of red-luminescent Ru(II) complexes for optical sensing, multi-p K a members of this family are proposed. Bipyridine ligands bearing protonatable groups (amines and carboxylates) are the basis to design and prepare the indicator dyes. Their photophysical properties and response to pH changes were investigated in the pH 3.5 − 9.0 range. The complex [Ru(DCB) 2 DEAMB], where DCB and DEAMB stand for 2,2’-bipyridine-4,4’-dicarboxylate and 4,4’-( N,N -diethylaminomethyl)-2,2’-bipyridine, respectively, shows a reversible monotonic change of its emission wavelength maximum (648 – 634 nm), luminescence intensity (1.40x) and lifetime (335 – 429 ns) in solution with increasing pH. This complex and two similar ones were covalently tethered to commercial TentaGel® M Br polymer microbeads for luminescence phase shift fiberoptic pH measurements. The immobilized [Ru(DCB) 2 DEAMB] displays the widest pH sensitivity over pH 3.5 to pH 8.5. The stability of this sensor was satisfactory when cycling between pH 3.5 and 8.5 for five days as well as under a three-day cycle between each pH unit. Changes of the buffer type, buffer concentration and osmolarity did not significantly influence the sensor response; however, large variations of dissolved oxygen and, naturally, temperature would require correction by the corresponding sensors. The novel, robust luminescent pH sensor has been tested in phase-sensitive mode for cell cultures monitoring in commercial bioreactors, but its response would also be suitable for in situ monitoring of natural waters. • A new luminescent pH sensor with extended range (3.5 – 8.5) has been developed. • The dye is a multifunctional Ru(II) polypyridyl complex with overlapping p K a • Long-lived τ (∼ 0.4 µs) is used for the fiberoptic phase-sensitive detection of pH. • Covalent tethering to hydrophilic polymer microbeads enables the sensing layer. • It has been tested on actual yeast cultures in a monitored bioreactor.
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