LUMOS - A Sensitive and Reliable Optode System for Measuring Dissolved Oxygen in the Nanomolar Range

被引:47
作者
Lehner, Philipp [1 ]
Larndorfer, Christoph [1 ]
Garcia-Robledo, Emilio [2 ]
Larsen, Morten [3 ]
Borisov, Sergey M. [1 ]
Revsbech, Niels-Peter [2 ]
Glud, Ronnie N. [3 ]
Canfield, Donald E. [3 ]
Klimant, Ingo [1 ]
机构
[1] Graz Univ Technol, Inst Analyt Chem & Food Chem, NAWI Graz, A-8010 Graz, Austria
[2] Aarhus Univ, Dept Biosci, DK-8000 Aarhus, Denmark
[3] Univ Southern Denmark, Nord Ctr Earth Evolut, DK-5230 Odense M, Denmark
基金
欧洲研究理事会;
关键词
SENSING MATERIALS; CONTAMINATION; RESPIRATION; SENSORS; GROWTH; FILM;
D O I
10.1371/journal.pone.0128125
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Most commercially available optical oxygen sensors target the measuring range of 300 to 2 mu mol L-1. However these are not suitable for investigating the nanomolar range which is relevant for many important environmental situations. We therefore developed a miniaturized phase fluorimeter based measurement system called the LUMOS (Luminescence Measuring Oxygen Sensor). It consists of a readout device and specialized "sensing chemistry" that relies on commercially available components. The sensor material is based on palladium(II)-5,10,15,20-tetrakis-(2,3,4,5,6-pentafluorphenyl)-porphyrin embedded in a Hyflon AD 60 polymer matrix and has a K-SV of 6.25 x 10(-3) ppmv(-1). The applicable measurement range is from 1000 nM down to a detection limit of 0.5 nM. A second sensor material based on the platinum(II) analogue of the porphyrin is spectrally compatible with the readout device and has a measurement range of 20 mu M down to 10 nM. The LUMOS device is a dedicated system optimized for a high signal to noise ratio, but in principle any phase flourimeter can be adapted to act as a readout device for the highly sensitive and robust sensing chemistry. Vise versa, the LUMOS fluorimeter can be used for read out of less sensitive optical oxygen sensors based on the same or similar indicator dyes, for example for monitoring oxygen at physiological conditions. The presented sensor system exhibits lower noise, higher resolution and higher sensitivity than the electrochemical STOX sensor previously used to measure nanomolar oxygen concentrations. Oxygen contamination in common sample containers has been investigated and microbial or enzymatic oxygen consumption at nanomolar concentrations is presented.
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页数:15
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