首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Mixed matrix membranes incorporated with Ln-MOF for selective and sensitive detection of nitrofuran antibiotics based on inner filter effect
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Mixed matrix membranes incorporated with Ln-MOF for selective and sensitive detection of nitrofuran antibiotics based on inner filter effect

机译:基于内部滤波器效应,掺入LN-MOF的混合基质膜,用于基于内部滤波器效应的硝基抗生素的选择性和敏感检测

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摘要

The detection of antibiotics is critical and challenging due to the pervasive use of antibiotics had inevitably brought some negative impacts on ecosystem and human health. Herein, we reported an anti-interfere ability enhanced luminescent sensor of lanthanide metal organic framework (Ln-MOF) filled mixed matrix membranes (MMMs), which combining the processibility of poly(methyl methacrylate) (PMMA) polymer with LnMOF of {[Tb-2(AIP)(2)(H2O)(10)]center dot(AIP)center dot 4H(2)O}(n) (Tb-AIP, where AIP is 5-aminoisophthalate) fillers. The as fabricated Tb-AIP MMMs are stable in water with a wide pH range and exhibit characteristic blue emission of Tb3+. Significantly, the Tb-AIP MMMs show highly selective and sensitive to nitrofuran antibiotics (NFAs) via inner filter effect (IFE), and yet remain unaffected not onlyby other common antibiotics but also by other types of analytes (metal ions and anions) that may coexist. The limits of detection for nitrofurantoin (NFT) and nitrofurazone (NFZ) are-0.30 and 0.35 mu M, respectively. As a proof of concept, the proposed MMMs sensor are demonstrated to be feasible for application in detecting NFAs in original water of Pearl River and bovine serum samples, the corresponding quenching constants and limits of detection are similar to their standard detections in an acceptable range. Furthermore, this MMMs sensor for NFAs detection was reversible after washing with deionized water. The luminescent Ln-MOF filled MMMs presented here provides a functional platform for simple yet useful in sensing of NFAs in environment and biology systems.
机译:抗生素的检测至关重要,由于抗生素的使用,抗生素不可避免地对生态系统和人类健康产生了一些负面影响。在此,我们报道了抗干涉能力增强镧系有机骨架(LN-MOF)填充混合基质膜(MMM)的能量增强发光传感器,其将聚(甲基丙烯酸甲酯)(PMMA)聚合物的加工性与{[TB的LNMOO相结合-2(AIP)(2)(2)(H2O)(10)]中心点(AIP)中心点4h(2)O}(n)(Tb-aip,其中Aip是5-氨基间邻苯二甲酸酯)填料。作为制造的TB-αIPMMM在水中稳定,具有宽的pH范围并表现出TB3 +的特征蓝色发射。值得注意的是,TB-AIP MMMS通过内部过滤器效应(IFE)对硝基抗生素(NFAs)具有高度选择性和敏感的,但仍未受到其他常见抗生素的不受影响,而且不受其他类型的分析物(金属离子和阴离子)可能共存。硝基呋喃素(NFT)和硝基脲(NFZ)的检测限分别为-0.30和0.35μm。作为概念证据,所提出的MMMS传感器被证明是可行的,用于在珠江河和牛血清样品的原始水中检测NFAS,相应的淬火常数和检测限值类似于它们在可接受范围内的标准检测。此外,用去离子水洗涤后,该用于NFAS检测的MMMS传感器是可逆的。这里填充的MMM的发光LN-MOF提供了一种功能平台,用于在环境和生物系统中的NFAS感测中进行简单而有用。

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