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油酸封端黑磷量子点的化学发光法用于 PM 中高选择性亚硫酸盐检测

Chemiluminescence of Oleic Acid Capped Black Phosphorus Quantum Dots for Highly Selective Detection of Sulfite in PM.

机构信息

College of Architecture & Environment , Sichuan University , Chengdu 610064 , People's Republic of China.

Analytical & Testing Center , Sichuan University , Chengdu 610064 , People's Republic of China.

出版信息

Anal Chem. 2019 Jul 16;91(14):9174-9180. doi: 10.1021/acs.analchem.9b01927. Epub 2019 Jul 5.

Abstract

Quantum dots (QDs), especially metal-free QDs with their unique optoelectronic properties, environmental friendliness, and excellent biocompatibility, have opened a new avenue to explore novel chemiluminescence (CL) systems for analytical applications. However, the unknown CL properties, relatively weak emission, and instability of some of them in water (e.g., black phosphorus QDs) often seriously hinder their further practical applications. Chemical modification trends have offered new properties for materials and have been proved to be desirable ways to establish sensing platforms with improved sensitivity and stability. Herein, oleic acid capped black phosphorus QDs (OA-BP QDs) with improved stability and optical properties were successfully synthesized. More importantly, an extraordinary CL emission when OA-BP QDs reacted with SO was first observed. In the CL process, OA-BP QDs acted as the catalyst to trigger singlet oxygen (O) generation in NaHSO, and then a chemiluminescence resonance energy transfer (CRET) between (O)* (O dimeric aggregate) and OA-BP QDs was produced. On this basis, a new CL system for directly monitoring SO in airborne fine particulate matter (PM) was fabricated. The study opens attractive perspectives of modified metal-free QDs for the practice of CL in monitoring the chemical species in PM.

摘要

量子点(QDs),特别是具有独特光电性能、环境友好性和优异生物相容性的无金属 QDs,为探索用于分析应用的新型化学发光(CL)系统开辟了新途径。然而,一些 QDs 的未知 CL 性质、相对较弱的发光性以及在水中的不稳定性(例如黑磷 QDs)常常严重阻碍了它们的进一步实际应用。化学修饰趋势为材料提供了新的性质,并已被证明是建立具有更高灵敏度和稳定性的传感平台的理想途径。在此,成功合成了具有改进的稳定性和光学性质的油酸封端黑磷 QDs(OA-BP QDs)。更重要的是,首次观察到 OA-BP QDs 与 SO 反应时产生非凡的 CL 发射。在 CL 过程中,OA-BP QDs 充当催化剂,在 NaHSO 中引发单线态氧(O)的生成,然后在(O)*(O 二聚体聚集)和 OA-BP QDs 之间产生化学发光共振能量转移(CRET)。在此基础上,构建了一种用于直接监测空气中细颗粒物(PM)中 SO 的新型 CL 系统。该研究为 CL 在监测 PM 中化学物质的实践提供了改性无金属 QDs 的有吸引力的前景。

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