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利用量子点和钌配合物对氧气和温度进行双传感

Dual sensing of oxygen and temperature using quantum dots and a ruthenium complex.

作者信息

Jorge P A S, Maule C, Silva A J, Benrashid R, Santos J L, Farahi F

机构信息

Unidade de Optoelectrónica e Sistemas Electrónicos, INESC Porto, Rua do Campo Alegre, 687, 4169 007 Porto, Portugal.

出版信息

Anal Chim Acta. 2008 Jan 14;606(2):223-9. doi: 10.1016/j.aca.2007.11.008. Epub 2007 Nov 9.

Abstract

A scheme for the simultaneous determination of oxygen and temperature using quantum dots and a ruthenium complex is demonstrated. The luminescent complex [Ru(II)-tris(4,7-diphenyl-1,10-phenanthroline)]2+ is immobilized in a non-hydrolytic sol-gel matrix and used as the oxygen sensor. The temperature information is provided by the luminescent emission of core-shell CdSe-ZnS semiconductor nanocrystals immobilized in the same material. Measurements of oxygen and temperature could be performed with associated errors of +/-2% of oxygen concentration and +/-1 degrees C, respectively. In addition, it is shown that while the dye luminescence intensity is quenched both by oxygen and temperature, the nanocrystals luminescent emission responds only to temperature. Results presented demonstrate that the combined luminescence response allows the simultaneous assessment of both parameters using a single optical fiber system. In particular, it was shown that a 10% error in the measured oxygen concentration, induced by a change in the sample temperature, could be compensated using the nanocrystals temperature information and a correction function.

摘要

展示了一种使用量子点和钌配合物同时测定氧气和温度的方案。发光配合物[Ru(II)-三(4,7-二苯基-1,10-菲咯啉)]²⁺固定在非水解溶胶-凝胶基质中,并用作氧气传感器。温度信息由固定在同一材料中的核壳CdSe-ZnS半导体纳米晶体的发光发射提供。氧气和温度的测量可以分别在氧气浓度±2%和±1℃的相关误差范围内进行。此外,结果表明,虽然染料发光强度会被氧气和温度淬灭,但纳米晶体的发光发射仅对温度有响应。所呈现的结果表明,组合的发光响应允许使用单个光纤系统同时评估这两个参数。特别是,结果表明,利用纳米晶体的温度信息和校正函数,可以补偿由样品温度变化引起的测量氧气浓度10%的误差。

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