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Dual-functional lanthanide metal organic frameworks for visual and ultrasensitive ratiometric fluorescent detection of phosphate based on aggregation-induced energy transfer

机译:双功能镧系有机框架,用于基于聚集诱导的能量转移的磷酸盐的视觉和超敏感比例荧光检测

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摘要

Phosphate (Pi) not only plays a significant role in physiological processes, but also is an important indicator for aquatic ecosystems. The dual-functional lanthanide metal organic frameworks (MOFs) were synthesized for visual and ultrasensitive ratiometric fluorescent detection of Pi based on aggregation-induced energy transfer. In the MOFs material, ciprofloxacin (CIP) functions as an energy donor and results in the fluorescence enhancement of Eu3+; the introduction of pyromellitic acid can cause the aggregation of the CIP-Eu3+ complex, and red characteristic fluorescence of Eu3+ at 614 nm is further enhanced (about 40 times). When Pi is added to the MOFs solution, CIP is released from the MOFs, red fluorescence of Eu3+ is quenched and blue fluorescence of CIP is simultaneously recovered, thereby a ratiometric fluorescent probe for the detection of Pi was fabricated. The fluorescent response based on intermolecular energy transfer of the CIP-Eu3+ complex is very sensitive to Pi. The limit of detection (3 sigma/K) of the probe is ultrasensitive and attains 4.4 nM. The possible interferential substances such as 17 common metal ions and 14 anions investigated do not interfere with the Pi detection. The ratiometric fluorescent probe has been successfully used in the determination of Pi in real human urine and lake water samples. This work may supply a new strategy for fabricating ratiometric fluorescent probe and a prospective application in biological and environmental samples. (C) 2020 Elsevier B.V. All rights reserved.
机译:磷酸盐(PI)不仅在生理过程中发挥着重要作用,而且是水生生态系统的重要指标。基于聚集诱导的能量转移,合成了双官能镧系金属有机框架(MOFS)以进行视觉和超敏比例荧光检测。在MOFS材料中,环丙沙星(CIP)用作能量供体,并导致EU3 +的荧光增强;吡咯啉酸的引入可以引起CIP-EU3 +复合物的聚集,并且Eu3 +的红色特征荧光进一步增强(约40次)。当将PI添加到MOFS溶液中时,CIP从MOF释放时,淬灭EU3 +的红色荧光,并同时回收CIP的蓝荧光,从而制造了用于检测PI的比例荧光探针。基于CIP-EU3 +复合物的分子间能量转移的荧光响应对PI非常敏感。探针的检测极限(3 sigma / k)是超声敏感的,达到4.4nm。所研究的可能的干扰物质如17个常见金属离子和14个阴离子,不干扰PI检测。比率荧光探针已成功地用于真正的人类尿液和湖水样品中的PI。这项工作可以提供一种制造比例荧光探针的新策略和在生物和环境样品中的前瞻性应用。 (c)2020 Elsevier B.V.保留所有权利。

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