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Metal-organic frameworks (MOFs) based luminescent and electrochemical sensors for food contaminant detection

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 453, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.jhazmat.2023.131324

关键词

MOFs food sensors; Luminescent; Electrochemical; Detection Limit; Signal changes mechanism

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With the increasing population, food toxicity has become a prevalent concern due to the growing contaminants of food products. Metal-organic frameworks (MOFs) based on luminescence and electrochemical sensors are promising materials for food contaminants monitoring. This review summarizes the recent progress on MOF sensors for detecting food contaminants and discusses their sensitivity, selectivity, and capacities for common food toxicants.
With the increasing population, food toxicity has become a prevalent concern due to the growing contaminants of food products. Therefore, the need for new materials for toxicant detection and food quality monitoring will always be in demand. Metal-organic frameworks (MOFs) based on luminescence and electrochemical sensors with tunable porosity and active surface area are promising materials for food contaminants monitoring. This review summarizes and studies the most recent progress on MOF sensors for detecting food contaminants such as pesticides, antibiotics, toxins, biomolecules, and ionic species. First, with the introduction of MOFs, food con-taminants and materials for toxicants detection are discussed. Then the insights into the MOFs as emerging materials for sensing applications with luminescent and electrochemical properties, signal changes, and sensing mechanisms are discussed. Next, recent advances in luminescent and electrochemical MOFs food sensors and their sensitivity, selectivity, and capacities for common food toxicants are summarized. Further, the challenges and outlooks are discussed for providing a new pathway for MOF food contaminant detection tools. Overall, a timely source of information on advanced MOF materials provides materials for next-generation food sensors.

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