Boron difluoride modified zinc metal–organic framework-based “off–on” fluorescence sensor for tetracycline and Al3+ detection

A novel fluorescence “off–on” probe was developed using a boron difluoride–modified zinc metal–organic framework (Zn-MOF3) for sensitive determination of tetracycline (TC) and Al 3+ . The Zn-MOF3 has excellent optical property and good applicability in aqueous phase. The fluorescence recorded at 436...

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Veröffentlicht in:Mikrochimica acta (1966) 2024-03, Vol.191 (3), p.144-144, Article 144
Hauptverfasser: Wang, Qihui, Du, Haochen, Tang, Rui, Wang, Xiaohui, Xie, Lei, Liu, Jun, Sun, Kang, Li, Zhonghui, Deng, Guowei
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Sprache:eng
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Zusammenfassung:A novel fluorescence “off–on” probe was developed using a boron difluoride–modified zinc metal–organic framework (Zn-MOF3) for sensitive determination of tetracycline (TC) and Al 3+ . The Zn-MOF3 has excellent optical property and good applicability in aqueous phase. The fluorescence recorded at 436 nm was quenched at the excitation wavelength of 336 nm. Signal-off detection of tetracycline via fluorescence quenching of Zn-MOF3 is based on the inner filter effect. Fluorescence on–off-on detection of Al 3+ occurs via the specific binding between tetracycline and Al 3+ . The limits of detection for TC and Al 3+ were 28.4 nM and 106.7 nM, respectively. This probe exhibited high selectivity which was used for the determination of TC and Al 3+ with satisfied recoveries (89.8 to 105.6% for TC, 90.0 to 110.4% for Al 3+ ) and good precision (
ISSN:0026-3672
1436-5073
DOI:10.1007/s00604-024-06211-9