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- W3136173101 endingPage "118056" @default.
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- W3136173101 abstract "MAPbBr3 has a great prospect in various fields, due to excellent fluorescence quantum efficiency, band gap tunable and short of fluorescence lifetime. However, the instability of MAPbBr3 seriously impedes its application. Herein, the MAPbBr3 embedded in Zinc-Cobalt binary zeolitic imidazolate framework (ZIF-8Cox%, x = 0–20) has been developed to fabricate MAPbBr3@ZIF-8Cox% for detecting Fe3+ in mixing various metal ions water. The investigation of concentration of doping Co2+ on the emission intensities of MAPbBr3@ZIF-8Cox% composite demonstrated that the concentration of 5% with Co2+ showed superior fluorescence intensity after 30 days in the water. The fluorescent sensing studies indicated that MAPbBr3@ZIF-8Cox% can detect Fe3+ ion in water with high sensitivity and selectivity even in the presence of other interfering metal ions including Fe2+ ion. Moreover, the potential fluorescence sensing mechanism of MAPbBr3@ZIF-8Cox% for Fe3+ ion in aqueous solution was also discussed. • A novel fluorescence probe detecting Fe 3+ based on MAPbBr 3 @ZIF-8Co x% is proposed. • MAPbBr 3 @ZIF-8Co 5% composite exhibits superior fluorescence intensity. • MAPbBr3@ZIF-8Co5% sensor shows highly sensitive and selective to detect Fe3+. . • MAPbBr3@ZIF-8Co5% sensor presents exceptional repeatability and anti-interference." @default.
- W3136173101 created "2021-03-29" @default.
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- W3136173101 date "2021-07-01" @default.
- W3136173101 modified "2023-09-24" @default.
- W3136173101 title "Ultrastable MAPbBr3@ZIF-8Co5% as a novel fluorescence probe for highly selectively sensing Fe3+ in water" @default.
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- W3136173101 doi "https://doi.org/10.1016/j.jlumin.2021.118056" @default.
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