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在寿命模式下,实时室温磷光和蒸气超灵敏性。

In Situ Turn-On Room Temperature Phosphorescence and Vapor Ultra-sensitivity at Lifetime Mode.

机构信息

State Key Lab of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Changning Road 865, Shanghai 200050, China.

Center of Materials Science and Optoelectronics Engineering, University of the Chinese Academy of Sciences, Yuquan Road 19, Beijing 100039, China.

出版信息

Anal Chem. 2022 Mar 29;94(12):5190-5195. doi: 10.1021/acs.analchem.2c00270. Epub 2022 Mar 16.

Abstract

Organic room temperature phosphorescence (RTP) systems are rarely reported for vapor phase sensing due to the contradiction between vapor permeability and phosphorescence ability. Till now, almost all reported works are based on ″turn-off″ mode RTP detection by destroying the compact-packaging oxygen-free environment. ″Turn-on″ mode RTP detection owns additional anti-interference capability due to a lower initial RTP background signal, while its realization is even harder. In this research, in situ phosphorescence ″turn-on″ sensing was realized for methamphetamine (MPEA) vapor detection. Based on the formation of aromatic phenolic aldehyde-secondary amine ion pairs with air-stable RTP performance, the fluorescent tri-formyl phenol (TFP) film was converted into a stable RTP state after being exposed to the MPEA vapor, as supported by nuclear magnetic resonance (NMR) and mass spectrometry together with theoretical calculations. The red-shifted absorption and emission, enhanced emission intensity, and 49.7 μs phosphorescence lifetime allowed multiple mode MPEA vapor sensing from chromaticity to fluorescence to phosphorescence. The lifetime mode detection limit reached 0.4 ppt, 5 orders of magnitude lower than the intensity mode detection limit of 20.3 ppb.

摘要

有机室温磷光(RTP)体系由于蒸气透过性和磷光能力之间的矛盾,很少用于蒸气相传感。到目前为止,几乎所有报道的工作都是基于破坏密封无氧环境的“关闭”模式 RTP 检测。由于初始 RTP 背景信号较低,“开启”模式 RTP 检测具有额外的抗干扰能力,但其实现甚至更难。在这项研究中,实现了用于检测甲基苯丙胺(MPEA)蒸气的原位磷光“开启”传感。基于与空气稳定的 RTP 性能形成芳香酚醛-仲胺离子对,暴露于 MPEA 蒸气后,荧光三醛基苯酚(TFP)薄膜转变成稳定的 RTP 状态,这得到了核磁共振(NMR)和质谱以及理论计算的支持。红移的吸收和发射、增强的发射强度和 49.7 μs 的磷光寿命允许从色度、荧光到磷光进行多种模式的 MPEA 蒸气传感。寿命模式的检测限达到 0.4 ppt,比强度模式的 20.3 ppb 检测限低 5 个数量级。

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