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Peroxidase-Mimetic and Fenton-Like Activities of Molybdenum Oxide Quantum Dots

机译:氧化钼量子点的过氧化物酶模拟和芬顿样活性

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Molybdenum oxide nanomaterials have become a popular nanomaterial while its catalysis behavior especially the biocatalysis property is little understood,even though molybdenum has been employed as a key cofactor in several important enzymes in biological system.On the basis of these,the Fenton and peroxidase-like property of molybdenum oxide quantum dots(MoOx QDs)with mixed valence state was carefully investigated using tetramethylbenzidine(TMB)and methyl orange(MO)as the substrates.The results showed that MoOx QDs not only serve as a Fenton reagent,degrading MO to colorless products,but also exhibit intrinsic peroxidase-mimetic activity,oxidizing TMB to the oxidized state oxTMB.The catalysis mechanism of MoOx QDs is that MoOx QDs can facilitate the decomposition of H2O2 and a large amount of radicals was generated,leading to MO decomposing and TMB oxidizing subsequently.Inspired by the findings,a visible method was developed for sensitive and selective detection of H2O2 and glucose,and the limit of detection for H2O2 and glucose is 7.75 μM and 8.95 μM(3σ/K),respectively.Moreover,glucose content in human serum samples was successfully determined by the proposed visible method,and the results are consistent well with those obtained by handheld glucose meter,suggesting a high accuracy of the present method.
机译:氧化钼纳米材料已成为一种流行的纳米材料,而其催化行为,尤其是生物催化特性,即使在生物系统中的几种重要酶中使用了钼作为关键辅助因子。使用四甲基苯胺(TMB)和甲基橙(MO)仔细研究了具有混合价状态的钼量子点(MOOX QD)的性质。结果表明,MOOX QDS不仅是Fenton试剂,还可以作为Fenton试剂,将MO脱落至无色产物,但也表现出内在的过氧化物酶模拟活性,将TMB氧化为氧化态OXTMB。MOOX QDS的催化机制是,MOOX QD可以促进H2O2的分解,并促进大量自由基的分解,导致MO分解和TMB的分解和TMB随后氧化。发现发现,开发了一种可见的方法,用于敏感和选择性检测H2O2和葡萄糖,A d H2O2和葡萄糖的检测限分别为7.75μm和8.95μm(3σ/K)。此外,通过拟议的可见方法成功确定了人血清样品中的葡萄糖含量,并且结果与通过该方法一致,而结果一致手持葡萄糖表,表明本方法的高精度。

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