Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/92905
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Title: An ultrasensitive and selective fluorescent nanosensor based on porphyrinic metal–organic framework nanoparticles for Cu2+ detection
Authors: Cheng, C 
Zhang, R 
Wang, J 
Zhang, Y
Wen, C 
Tan, Y 
Yang, M 
Issue Date: 7-Feb-2020
Source: Analyst, 7 Feb. 2020, v. 145, no. 3, p. 797-804
Abstract: Detecting trace amounts of copper ions (Cu2+) is of high importance since copper is an essential element in the environment and the human body. Despite the recent advances in Cu2+ detection, the current approaches still suffer from insensitivity and lack of in situ detection in living cells. In the present work, a fluorescent nanosensor based on porphyrinic metal-organic framework nanoparticles (MOF-525 NPs) is proposed for sensitive and selective monitoring of Cu2+ in aqueous solution and living cells. The MOF-525 NPs with attractive properties, including ultrasmall size, good water dispersity and intense red fluorescence, are prepared via a facile and environment-friendly hydrothermal route. The fluorescence signal of MOF-525 NPs could be quenched statically by Cu2+ with high selectivity due to the strong affinity of Cu2+ to the porphyrin ligand in MOF-525. The proposed fluorescent nanosensor has a linear response in the range of 1.0-250 nM with a low detection limit of 220 pM. Furthermore, it is successfully employed for the detection of Cu2+ in water samples and the intracellular imaging of Cu2+ in living cells, demonstrating its great potential in the sensing and biological fields.
Publisher: Royal Society of Chemistry
Journal: Analyst 
ISSN: 0003-2654
DOI: 10.1039/c9an02231g
Rights: This journal is © The Royal Society of Chemistry 2020
The following publication Cheng, C., Zhang, R., Wang, J., Zhang, Y., Wen, C., Tan, Y., & Yang, M. (2020). An ultrasensitive and selective fluorescent nanosensor based on porphyrinic metal–organic framework nanoparticles for Cu 2+ detection. Analyst, 145(3), 797-804 is available at https://doi.org/10.1039/c9an02231g
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