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Oxygen-Sensitive Phosphorescent Nanomaterials Produced from High-Density Polyethylene Films by Local Solvent-Crazing

机译:由高密度聚乙烯薄膜通过局部溶剂疯狂制备的氧敏性磷光纳米材料

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Discrete solid-state phosphorescent oxygen sensors produced by local solvent-crazing of high density polyethylene films are described. The simple spotting of dye solution followed by tensile drawing of the polymer substrate provides uniform nanostructures with good spatial control, effective encapsulation of dye molecules, and quenchability by O_2. The dye-polymer composite sensors prepared using toluene as a solvent and stabilized by annealing at high temperature, show moderate optical signals, near-optimal sensitivity to O_2 (RSD at 21 KPa 1.9%), and reproducible phosphorescence lifetime readings. Calibration experiments performed over 0-25 kPa O_2 and 10-30℃ temperatures ranges reveal linear Stern--Volmer plots and temperature dependences and minimal effect of humidity on sensor calibration. The high degree of lateral and in-depth homogeneity of these O_2-sensitive materials was confirmed by high-resolution atomic force and wide-field optical microscopy, including 2D and 3D phosphorescence lifetime imaging.
机译:描述了通过高密度聚乙烯薄膜的局部溶剂裂解生产的离散固态磷光氧传感器。染料溶液的简单点涂,然后对聚合物基材进行拉伸拉伸,可提供具有良好空间控制,染料分子有效包封和O_2猝灭性的均匀纳米结构。使用甲苯作为溶剂并通过高温退火稳定的染料-聚合物复合传感器显示出适度的光信号,对O_2的灵敏度接近最佳(RSD在21 KPa 1.9%时),可再现的磷光寿命读数。在0-25 kPa O_2和10-30℃温度范围内进行的校准实验显示出线性的St​​ern-Volmer图和温度依赖性以及湿度对传感器校准的影响最小。这些O_2敏感材料的高度横向和深度均匀性已通过高分辨率原子力和宽视场光学显微镜得到了证实,包括2D和3D磷光寿命成像。

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