Department of Chemistry, Beijing Key Laboratory for Microanalytical Methods and Instrumentation, Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Tsinghua University, Beijing, 100084, China.
Department of Chemistry, Beijing Key Laboratory for Microanalytical Methods and Instrumentation, Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Tsinghua University, Beijing, 100084, China.
Talanta. 2022 Jan 1;236:122845. doi: 10.1016/j.talanta.2021.122845. Epub 2021 Sep 6.
Acetone serves as a routine solvent and synthetic intermediate in chemical factories and laboratories. Monitoring the level of acetone vapor in working environment is of great necessity to employee health due to its strong volatility and toxicity, but there is still in lack of simple and easy-to-use portable sensors. In this study, we report a portable and intuitive indicator for real-time displaying acetone vapor concentration in air, based on the ratiometric fluorescence response of the designed organic molecule, PhB-SSB, to acetone. As an aggregation-induced emission (AIE) fluorophore, PhB-SSB underwent specific reaction with acetone through the salicylaldehyde Schiff base and phenylboronate groups to realize ratiometric fluorescence change from green to red after acetone vapor treatment. The reaction mechanism was proposed as acetone-induced breakage of the imine bond in PhB-SSB. We further fabricated PhB-SSB into a film fluorescent sensor for acetone vapor with good sensitivity and selectivity. Taking advantage of its intuitive fluorescent color contrast, acetone-specific response and small size, our sensor is practical in real-time alarming the acetone vapor hazard in the workplaces.
丙酮在化工厂和实验室中用作常规溶剂和合成中间体。由于其强挥发性和毒性,监测工作环境中丙酮蒸气的水平对员工健康非常必要,但仍然缺乏简单易用的便携式传感器。在这项研究中,我们报告了一种基于设计的有机分子 PhB-SSB 对丙酮的比率荧光响应的便携式和直观的实时显示空气中丙酮蒸气浓度的指示剂。作为聚集诱导发射(AIE)荧光团,PhB-SSB 通过水杨醛席夫碱和苯硼酸基团与丙酮发生特异性反应,在丙酮蒸气处理后实现从绿色到红色的比率荧光变化。反应机理被提出为丙酮诱导的 PhB-SSB 中亚胺键的断裂。我们进一步将 PhB-SSB 制成用于丙酮蒸气的薄膜荧光传感器,具有良好的灵敏度和选择性。利用其直观的荧光颜色对比、对丙酮的特异性响应和体积小的特点,我们的传感器可实际用于实时报警工作场所中的丙酮蒸气危害。