Organic Electronics Research Center, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Department of Electronic Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Biosensors (Basel). 2022 Sep 20;12(10):774. doi: 10.3390/bios12100774.
Sensitivity is one of the crucial factors in determining the quality of a fluorescence/phosphorescence-based gas sensor, and is estimated from the measurement of responses (I/I, where I and I refer to the measured optical intensity of a sensor in absence and presence of analyte molecules) at various concentrations of analytes. In this work, we demonstrate phosphorescence-based optical oxygen sensors fabricated on highly porous anodic aluminum oxide (AAO) membranes showing dramatically high response. These sensors exploit the enormous surface area of the AAO to facilitate the effective interaction between the sensing molecules and the analytes. We spin-coat an AAO membrane (200 nm pore diameter) with a platinum-based oxygen sensing porphyrin dye, platinum(II) meso-tetrakis (pentafluorophenyl) porphyrin (PtTFPP), to fabricate a sensor exhibiting I/I ~400 at 100% oxygen atmosphere. To address the generality of the AAO membrane, we fabricate a separate sensor with another porphyrin dye, platinum octaethylporphyrin (PtOEP), which exhibits an even higher I/I of ~500. Both of these sensors offer the highest responses as an optical oxygen sensor hitherto reported. SEM and EDS analysis are performed to realize the effect of the increased surface area of the AAO membrane on the enhanced sensitivity.
灵敏度是决定荧光/磷光基气体传感器质量的关键因素之一,可通过测量传感器在不同浓度分析物分子存在下的响应(I/I,其中 I 和 I 分别指传感器在不存在和存在分析物分子时的测量光学强度)来估算。在这项工作中,我们展示了基于高度多孔阳极氧化铝 (AAO) 膜的磷光基光学氧气传感器,其表现出极高的响应。这些传感器利用 AAO 的巨大表面积来促进传感分子与分析物之间的有效相互作用。我们通过旋涂方法在 AAO 膜(200nm 孔径)上涂覆了一种基于铂的氧传感卟啉染料,即铂(II) 四(五氟苯基)卟啉 (PtTFPP),以制备在 100%氧气环境下 I/I 约为 400 的传感器。为了说明 AAO 膜的通用性,我们用另一种卟啉染料,即铂八乙基卟啉 (PtOEP),制备了一个单独的传感器,其 I/I 甚至更高,约为 500。这两个传感器都提供了迄今为止报道的光学氧气传感器中最高的响应。通过 SEM 和 EDS 分析来认识到 AAO 膜表面积的增加对提高灵敏度的影响。