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基于发光寿命的水导率传感:使用阳离子葡聚糖负载的钌(II)多吡啶配合物

Luminescence Lifetime-Based Water Conductivity Sensing Using a Cationic Dextran-Supported Ru(II) Polypyridyl Complex.

作者信息

Knöbl Ya Jie, Johnston Lauren M, Quílez-Alburquerque José, Orellana Guillermo

机构信息

Chemical Optosensors & Applied Photochemistry Group (GSOLFA), Department of Organic Chemistry, Faculty of Chemistry, Complutense University of Madrid, 28040 Madrid, Spain.

出版信息

Sensors (Basel). 2024 Dec 28;25(1):121. doi: 10.3390/s25010121.

Abstract

Water conductivity sensing relies universally on electrical measurements, which are subject to corrosion of the electrodes and subsequent signal drift in prolonged in situ uses. Furthermore, they cannot provide contactless sensing or remote readout. To this end, a novel device for water conductivity monitoring has been developed by employing a microenvironment-sensitive ruthenium complex, [Ru(2,2'-bipyridine-4,4'-disulfonato)], embedded into a quaternary ammonium functionalized cross-linked polymer support. The degree of swelling of the latter, which leads to a change in the emission lifetime, depends on the water conductivity. The sensor displays a reversible response (2 min ≤ ≤ 3 min) and has been shown to be stable for >65 h of continuous monitoring of 0.8-12.8 mS cm KCl solutions. Changes to the cation do not affect the sensor response, while changes to the anion type induce small effects. Variations in the dissolved O or temperature require corrections of the response. The sensor can be interrogated alongside dissolved O and pH luminescent sensors based on the same family of indicator dyes to exploit the definite advantages of luminescence lifetime-based detection.

摘要

水导率传感普遍依赖于电学测量,而这种测量在长时间原位使用时会受到电极腐蚀及随后信号漂移的影响。此外,它们无法提供非接触式传感或远程读数。为此,通过将一种对微环境敏感的钌配合物[Ru(2,2'-联吡啶-4,4'-二磺酸酯)]嵌入季铵官能化交联聚合物载体中,开发出了一种用于水导率监测的新型装置。后者的溶胀程度会导致发射寿命发生变化,而溶胀程度取决于水导率。该传感器显示出可逆响应(2分钟≤响应时间≤3分钟),并且在对0.8 - 12.8 mS cm KCl溶液进行>65小时的连续监测中已证明是稳定的。阳离子的变化不会影响传感器响应,而阴离子类型的变化会产生微小影响。溶解氧或温度的变化需要对响应进行校正。该传感器可以与基于同一类指示染料的溶解氧和pH发光传感器一起进行检测,以利用基于发光寿命检测的明确优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dca/11722963/ac5d8889ded6/sensors-25-00121-g001a.jpg

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