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首页> 外文期刊>Chemistry: A European journal >Intrinsic Artefacts in Optical Oxygen Sensors-How Reliable are our Measurements?
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Intrinsic Artefacts in Optical Oxygen Sensors-How Reliable are our Measurements?

机译:光学氧气传感器中的固有伪像-我们的测量有多可靠?

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摘要

Optical oxygen sensing is of broad interest in many areas of research, such as medicine, food processing, and micro- and marine biology. The operation principle of optical oxygen sensors is well established and these sensors are routinely employed in lab and field experiments. Ultratrace oxygen sensors, which enable measurements in the sub-nanomolar region (dissolved oxygen), are becoming increasingly important. Such sensors prominently exhibit phenomena that complicate calibration and measurements. However, these phenomena are not constrained to ultratrace sensors; rather, these effects are inherent to the way optical oxygen sensors work and may influence any optical oxygen measurement when certain conditions are met. This scenario is especially true for applications that deal with high-excitation light intensities, such as microscopy and microfluidic applications. Herein, we present various effects that we could observe in our studies with ultratrace oxygen sensors and discuss the reasons for their appearance, the mechanism by which they influence measurements, and how to best reduce their impact. The phenomena discussed are oxygen photoconsumption in the sensor material; depletion of the dye ground state by high-excitation photon-flux values, which can compromise both intensity and ratiometric-based measurements; triplet-triplet annihilation; and singlet-oxygen accumulation, which affects measurements at very low oxygen concentrations.
机译:在许多研究领域,例如医学,食品加工以及微生物和海洋生物学,光学氧感测引起了广泛的兴趣。光学氧气传感器的工作原理已经很成熟,这些传感器通常在实验室和野外实验中使用。能够在亚纳摩尔级区域(溶解氧)进行测量的超痕量氧传感器变得越来越重要。这种传感器显着地表现出使校准和测量复杂化的现象。但是,这些现象并不限于超痕量传感器。相反,这些影响是光学氧气传感器工作方式所固有的,并且在满足某些条件时可能会影响任何光学氧气测量。这种情况对于处理高激发光强度的应用尤其如此,例如显微镜和微流控应用。在此,我们介绍了我们在使用超痕量氧传感器进行的研究中可以观察到的各种效应,并讨论了它们出现的原因,它们影响测量的机理以及如何最大程度地减少其影响。讨论的现象是传感器材料中的氧气光耗。高激发光子通量值会耗尽染料基态,这会损害强度和基于比率的测量结果;三重态-三重态ni灭;单线态氧的积累,这会影响非常低的氧浓度下的测量。

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