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Au@Ag Heterogeneous Nanorods as Nanozyme Interfaces with Peroxidase-Like Activity and Their Application for One-Pot Analysis of Glucose at Nearly Neutral pH

机译:Au @ Ag异质纳米棒作为具有过氧化物酶活性的纳米酶界面及其在接近中性pH的葡萄糖一锅分析中的应用

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As substitutes for natural peroxidases, most nanomaterial-based enzyme mimetics (nanozymes) have unique properties such as high stability, low-cost, large surface area, and high catalytic activity. However, they usually work in acidic conditions and thus impede their real applications. In this work, by modulating the nanostructure, composition, and surface property of the bimetallic materials, the positively charged poly(diallyldimethylammonium)-stabilized Au@.Ag heterogeneous nanorods.(NRs) were developed as synergistic peroxidase-like interfaces, which exhibited high activity over a wide pH range (pH 4.0-6.5) using 2,2'-azino-bis(3-ethylbenzthiazoline-6-sulfonic acid) diammonium salt (ABTS) as the chromogenic substrate. At pH 6.5, the peroxidase-like activity for the Au@Ag heterogeneous NRs was stable and optimal within 20-40 degrees C. Moreover, the Au@Ag heterogeneous NRs showed excellent temperature stability and long-term storage stability. Given these characters, the detection of H2O2 at pH 6.5 was proposed on the basis of the Au@Ag heterogeneous NRs catalyzing the colorimetric reaction of H2O2 and ABTS, where the oxidized ABTS showed a typical absorption peak at 414 nm. The absorbance at 414 nrn was linear with H2O2 concentration from 0.01 to 10 mM. Further, considering that Au@Ag heterogeneous NRs and glucose wddase (GOx) have similar optimal pH for catalytic activities, a novel one-pot method for the detection of glucose was developed by the coupled catalytic reaction using GOx, Au@Ag heterogeneous NRs, and ABTS at nearly neutral pH (pH 6.5) and 37 degrees C. This proposed method had simple and rapid processes, wide linear range (0.05-20 mM), and reliability for the successful analysis of real samples. On the basis of these attractive and unique characteristics, Au@Ag heterogeneous NRs can become promising substitutes for peroxidase in analytical chemistry and environmental science.
机译:作为天然过氧化物酶的替代品,大多数基于纳米材料的酶模拟物(纳米酶)具有独特的特性,例如高稳定性,低成本,大表面积和高催化活性。但是,它们通常在酸性条件下工作,因此阻碍了其实际应用。在这项工作中,通过调节双金属材料的纳米结构,组成和表面性质,开发了带正电的聚二烯丙基二甲基铵稳定化的Au.Ag异质纳米棒(NRs)作为协同的过氧化物酶样界面,具有很高的协同作用。使用2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸)二铵盐(ABTS)作为发色底物,可在宽pH范围(pH 4.0-6.5)中获得最佳活性。在pH 6.5时,Au @ Ag异质NRs的过氧化物酶样活性稳定且最佳。在20-40摄氏度下,Au @ Ag异质NRs表现出优异的温度稳定性和长期储存稳定性。考虑到这些特征,基于Au @ Ag异质NR催化H2O2和ABTS的比色反应,提出了在pH 6.5下检测H2O2的方法,氧化的ABTS在414 nm处有一个典型的吸收峰。 414 nrn处的吸光度与H2O2浓度在0.01至10 mM之间呈线性关系。此外,考虑到Au @ Ag异质NR和葡萄糖wddase(GOx)具有相似的最佳pH催化活性,通过使用GOx,Au @ Ag异质NRs的耦合催化反应,开发了一种新颖的一锅法检测葡萄糖。在接近中性pH(pH 6.5)和37摄氏度的条件下使用ABTS和ABTS。该提议的方法具有简单,快速的过程,宽线性范围(0.05-20 mM)和成功分析真实样品的可靠性。基于这些吸引人的独特特性,Au @ Ag异质NR可以成为分析化学和环境科学中过氧化物酶的有前途的替代品。

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