Yunnan Key Laboratory for Micro/Nano Materials & Technology, School of Materials and Energy, Yunnan University, Kunming 650091, China.
Molecules. 2023 Feb 6;28(4):1566. doi: 10.3390/molecules28041566.
In this report, red-emissive carbon dots (C-dots) were facilely prepared from -phenylenediamine via microwave-assisted hydrothermal treatment. The C-dots demonstrated excitation wavelength-independent emission with maximums at 621 nm that could be effectively quenched by Ag via static quenching. This phenomenon was exploited to establish a sensitive fluorescence assay with a low detection limit (0.37 μM) and wide linear range (0-50 μM). In addition, this assay demonstrated excellent selectivity toward Ag, free from the interference of 16 commonly seen metal ions. Most importantly, the assay demonstrated high reliability toward samples in deionized water, mineral water, lake water, and serum, which could indicate potential applications for Ag monitoring in complicated natural and biological environments.
在本报告中,通过微波辅助水热法从邻苯二胺中简便地制备了红色发光碳点(C-dots)。C-dots 表现出激发波长独立的发射,最大发射波长为 621nm,可以通过静态猝灭有效地被 Ag 猝灭。该现象被用于建立一种具有低检测限(0.37μM)和宽线性范围(0-50μM)的灵敏荧光测定法。此外,该测定法对 Ag 具有优异的选择性,不受 16 种常见金属离子的干扰。最重要的是,该测定法对去离子水、矿泉水、湖水和血清中的样品具有高度可靠性,这表明它可能适用于在复杂的自然和生物环境中监测 Ag。