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Ultra-sensitive optical oxygen sensors for characterization of nearly anoxic systems

机译:超灵敏的光学氧气传感器,用于表征近乎缺氧的系统

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Oxygen quantification in trace amounts is essential in many fields of science and technology. Optical oxygen sensors proved invaluable tools for oxygen measurements in a broad concentration range, but until now neither optical nor electrochemical oxygen sensors were able to quantify oxygen in the sub-nanomolar concentration range. Herein we present new optical oxygen-sensing materials with unmatched sensitivity. They rely on the combination of ultra-long decaying (several 100 ms lifetime) phosphorescent boron- and aluminium-chelates, and highly oxygen-permeable and chemically stable perfluorinated polymers. The sensitivity of the new sensors is improved up to 20-fold compared with state-of-the-art analogues. The limits of detection are as low as 5 p.p.b., volume in gas phase under atmospheric pressure or 7 pM in solution. The sensors enable completely new applications for monitoring of oxygen in previously inaccessible concentration ranges.
机译:在许多科学和技术领域中,痕量的氧气定量至关重要。光学氧气传感器被证明是在广泛的浓度范围内进行氧气测量的宝贵工具,但是到目前为止,光学氧气传感器和电化学氧气传感器都无法量化亚纳摩尔浓度范围内的氧气。在这里,我们提出了具有无与伦比的灵敏度的新型光学氧传感材料。它们依赖于超长衰减(寿命长达100毫秒)磷光硼和铝螯合物,以及高氧渗透性和化学稳定性的全氟化聚合物的组合。与最新的同类产品相比,新传感器的灵敏度提高了20倍。检测限低至5 p.p.b.,在大气压下为气相体积,或在溶液中为7 pM。传感器实现了全新的应用,可以监测以前无法达到的浓度范围内的氧气。

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