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基于双功能荧光探针的过氧化氢和左氧氟沙星的超灵敏检测。

Ultra-sensitive detection of hydrogen peroxide and levofloxacin using a dual-functional fluorescent probe.

机构信息

College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, Zhejiang 310058, China.

School of Life and Environmental Science,Hangzhou Normal University, Hangzhou, Zhejiang 311121, China.

出版信息

J Hazard Mater. 2022 Jun 15;432:128605. doi: 10.1016/j.jhazmat.2022.128605. Epub 2022 Mar 1.

DOI:10.1016/j.jhazmat.2022.128605
PMID:35286934
Abstract

Herein, a flower-shaped fluorescent probe was proposed for hydrogen peroxide (HO) and levofloxacin (LVF) sensing based on MoOx QDs@Co/Zn-MOFs with porous structure. Both MoOx QDs and Co/Zn-MOFs exhibited peroxidase-like properties, and the combination of them greatly aroused the synergistic catalytic capabilities between them. In o-Phenylenediamine (OPD)-HO system, MoOx QDs@Co/Zn-MOFs efficiently catalyzed HO to produce •OH and then oxidized OPD to its oxidation product (OxOPD). The OxOPD could not only emit blue fluorescence, but also inhibit the fluorescent intensity of MoOx QDs through fluorescence resonance energy transfer (FRET). Moreover, when introducing LVF into the system, the fluorescent intensities of MoOx QDs increased along with the aggregation of themselves while that of OxOPD remained unchanged, which was explained by the joint behavior of FRET and photo-induced electron transfer (PET) instead of the conventional aggregation-induced emission enhancement (AIEE). With these observation, the proposed probe was employed for HO and LVF determination in biological samples with the limit of detection (LOD) of 32.60 pmol/L and 0.85 μmol/L, respectively, suggesting the method holds great promises for trace HO and LVF monitoring in eco-environment.

摘要

在此,我们提出了一种基于具有多孔结构的 MoOx QDs@Co/Zn-MOFs 的花状荧光探针,用于检测过氧化氢(HO)和左氧氟沙星(LVF)。MoOx QDs 和 Co/Zn-MOFs 均表现出过氧化物酶样性质,它们的结合极大地激发了它们之间的协同催化能力。在邻苯二胺(OPD)-HO 体系中,MoOx QDs@Co/Zn-MOFs 有效地催化 HO 产生 •OH,然后将 OPD 氧化为其氧化产物(OxOPD)。OxOPD 不仅可以发射蓝色荧光,还可以通过荧光共振能量转移(FRET)抑制 MoOx QDs 的荧光强度。此外,当将 LVF 引入系统时,MoOx QDs 的荧光强度随着它们自身的聚集而增加,而 OxOPD 的荧光强度保持不变,这可以通过 FRET 和光诱导电子转移(PET)的联合行为来解释,而不是传统的聚集诱导发射增强(AIEE)。基于这些观察,该探针被用于生物样品中 HO 和 LVF 的测定,检测限分别为 32.60 pmol/L 和 0.85 μmol/L,表明该方法在痕量 HO 和 LVF 监测方面具有广阔的应用前景。

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