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- W4284966405 abstract "To address the problems of short donor-acceptor interaction distance and poor structural stability of the complexes in existing upconversion based luminescence resonance energy transfer (UC-LRET) biosensing technologies. We constructed a LiErF4 @ZIF-MnO2 nanoplatform taking advantages of the long-range energy migration characteristics of the energy level strongly correlated LiErF4 donor and the in situ immobilization technology on the ZIF surface. It significantly improves the solidity of the donor-acceptor structure, breaks the limitation of short LRET distance using the long-range energy migration among Er3+ ions, realizes the fully utilization of donor LiErF4 luminescence, and thus effectively improves the LRET efficiency. As a demonstration, this platform exhibited highly sensitive to GSH in solution with a detection limit of 0.14 μM. It presented good photostability, GSH-specific selectivity, and structural robustness under different physiological conditions. We also achieved real-time monitoring of GSH in cells, and effectively distinguished cancer cells from normal cells by the difference in GSH expression levels. The concept of constructing this platform can be of wide interest in the field of biosensing. And the use of long-range energy migration to break the limitations of the short-range action of LRET will make upconversion nanoprobes a more powerful tool for future detection applications." @default.
- W4284966405 created "2022-07-10" @default.
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- W4284966405 date "2022-10-01" @default.
- W4284966405 modified "2023-10-17" @default.
- W4284966405 title "Highly selective and sensitive optosensing of glutathione based on energy level strongly correlated upconversion nanoprobe" @default.
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- W4284966405 doi "https://doi.org/10.1016/j.snb.2022.132355" @default.
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