双癸酸
铕
荧光
共价键
炭疽杆菌
检出限
化学
分子
组合化学
纳米技术
材料科学
色谱法
有机化学
离子
物理
遗传学
量子力学
细菌
生物
植物
孢子
作者
Kaibin Li,Xiaorui Li,Dan Wang,Zhejian Li,Chenxi Li
标识
DOI:10.1016/j.microc.2021.106764
摘要
Here, we develop an europium-functionalized covalent organic framework ([email protected]3+) as the turn-on fluorescent switch for highly sensitive and selective monitoring of a major B. anthracis biomarker, dipicolinic acid (DPA). Eu3+ actually performs two roles during the sensing process: the clear response signal, and recognition sites toward DPA, when Dpy-Bt-COF acted as the protector for Eu3+. Once adding DPA into [email protected]3+, DPA exchanged water molecules to cooperate with Eu3+ and transmitted energy to it immediately, and thereby triggering visual fluorescence change. Attractively, [email protected]3+ can fast respond toward DPA within only 10 s. The sensor platform displayed an ultralow detection limit of 12.5 nM for DPA, well below the content of DPA (60 μM) produced by the contagious amount of B. anthracis required to result in anthrax. Our work not only demonstrates great prospect of Eu3+-based COF for DPA detection, but also provides a potential way to explore other functionalized materials for the monitoring of other targets.
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