MOF-on-MOF heterostructure boosting AIE sensing and triggered structural collapse for histamine detection

化学 咪唑酯 检出限 金属有机骨架 沸石咪唑盐骨架 荧光 组胺 盐酸四环素 荧光团 分子 异质结 发光 纳米技术 组合化学 色谱法 无机化学 吸附 有机化学 光电子学 生物化学 医学 物理 材料科学 抗生素 量子力学 内科学 四环素
作者
Yingao Yang,Zixuan Zhou,Tao Wang,Daoming Tian,Shuyue Ren,Zhixian Gao
出处
期刊:Talanta [Elsevier]
卷期号:270: 125632-125632 被引量:16
标识
DOI:10.1016/j.talanta.2024.125632
摘要

We explored a novel preparation method for MOF-on-MOF heterostructured material (Zn-BTEC@ZIF-8). This prepared heterostructured material acts as a container, capable of adsorbing tetracycline hydrochloride molecules into its backbone through hydrogen bonding and π-π interactions. This phenomenon triggers an aggregation induced emission (AIE) effect, leading to the formation of luminescent bodies. The coordination between histamine and MOF was found to collapse the originally stabilized MOF-on-MOF structure. This collapse causes the splitting of the initially stabilized MOF-on-MOF structure from the aggregated state into fragments, resulting in the quenching of fluorescence in the fluorophore. Remarkably, the fluorescence quenching efficiency of this composite surpasses that of single-layer metal−organic framework (MOF) zeolitic imidazolate framework-8 (ZIF-8) or zinc-based MOF of pyromellitic acid (Zn-BTEC), enabling more sensitive detection of histamine. In this investigation, we constructed a label-free fluorescent sensor specifically designed for the detection of histamine, capitalizing on the AIE effect inherent in MOF-on-MOF architecture and the presence of tetracycline hydrochloride (Tet). The sensor demonstrates a rapid, straightforward, and stable response, allowing for histamine detection within 20 min. Notably, the sensor covers a detection range of 2–400 mg L−1, achieving a low detection limit of 1.458 mg L−1 The practical application of this sensor for quantitative detection of histamine in river water and various fish species exhibited robust performance, ensuring reliability and accuracy in real samples. Its potential application in food safety and environmental monitoring is evident, making it a valuable tool for addressing histamine-related challenges in these domains.
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