聚丙烯腈
发光
静电纺丝
荧光
材料科学
水溶液
猝灭(荧光)
镧系元素
光化学
紫外线
检出限
化学
聚合物
光电子学
有机化学
光学
离子
复合材料
物理
色谱法
作者
Zhou Zhou,Mengchao Shang,Zhihong Yao,Jingjing Zhang
标识
DOI:10.1016/j.dyepig.2021.110016
摘要
From a medical point of view, Fe3+ cannot be absorbed by the human body and excessive Fe3+ had a complex effect, which could destroy the DNA structure and cause cancer. The detection of Fe3+ in blood had turned into an issue closely related to human health. Herein, Eu(BPDA)1.5[email protected] fluorescent fibers were successfully prepared by electrospinning using polyacrylonitrile (PAN) as substrate from self-assembled metal organic framework materials (MOFs). In the short response time, the fluorescence quenching phenomenon could be observed by naked eye when excited by ultraviolet light. The functionalized lanthanide [email protected] exhibited a characteristic red light emission dominated by Eu3+ ultra-sensitive electric dipole transition (5D0→7F2) under ultraviolet excitation and strong stability in aqueous solution. Compared with powdered Eu-MOFs, [email protected] had better thermal stability. [email protected] exhibited unique pertinence and excellent sensitivity in the detection of Fe3+, the fluorescence dynamic quenching was deduced by fluorescence lifetime fitting. Compared with the functionalized MOFs previously reported, [email protected] had a lower limit of detection (0.063 μM). This study provided a promising strategy for manufacturing flexible sensors for detecting low concentrations of Fe3+.
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