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新型 BiMoO 纳米形态实现超灵敏无酶葡萄糖追踪:Bi-Mo 协同作用。

New BiMoO nano-shapes toward ultrasensitive enzymeless glucose tracing: Synergetic effect of the Bi-Mo association.

机构信息

Chemistry & Chemical Engineering Research Center of Iran, Pajoohesh Blvd., Km 17, Karaj Hwy, Tehran, 14968-13151, Iran.

Chemistry & Chemical Engineering Research Center of Iran, Pajoohesh Blvd., Km 17, Karaj Hwy, Tehran, 14968-13151, Iran.

出版信息

Talanta. 2021 Jan 1;221:121560. doi: 10.1016/j.talanta.2020.121560. Epub 2020 Sep 3.

Abstract

In a novel approach, an efficient non-enzymatic glucose sensor based on pure phase of aurivillius bismuth molybdate (BM or γ-BiMoO) mixed metal oxides is reported. Three BM samples were synthesized, with/without l-cysteine (Cys) and dodecylamine (DDA) as additives, leading to different shapes: bullet (BM-C), confetti (BM-2Cys) and candy (BM-2DDA). The morphology and purity of the structures were confirmed by FE-SEM images and XRD. In order to investigate the sensor application, the samples were integrated on reduced graphene oxide and incorporated into simple and inexpensive glassy carbon electrode (GCE) without using any polyvinylpyrrolidone (PVP) or Nafion. To perform cyclic voltammetry experiments, all three biosensors were measured in PBS solution (pH = 7) in ±1.5 voltage range and 50 mV s scan rate. Glucose identification by the synthesized composites is an obvious sign of their high efficiency. According to chronoamperomograms, the best sensitivity of 3050 μA L mmol cm with linear range of 0.02-0.14 mmol L, low detection limit (LOD) of 0.004 mmol L and the signal/noise equal to 3 was achieved by BM-2DDA/rGO/GCE biosensor and its speedy amperometric response is less than 5 s. This biosensor showed impressive selectivity, repeatability and reproducibility results besides it maintains its stability considerably in great percentage of 98.5% after eight weeks. Also it showed prolonged stability after 50 min.

摘要

在一种新颖的方法中,报道了一种基于纯相的金红石型钼酸铋(BM 或 γ-BiMoO)混合金属氧化物的高效非酶葡萄糖传感器。合成了三种 BM 样品,分别添加/不添加半胱氨酸(Cys)和十二胺(DDA),得到了不同的形状:子弹(BM-C)、五彩纸屑(BM-2Cys)和糖果(BM-2DDA)。FE-SEM 图像和 XRD 证实了结构的形态和纯度。为了研究传感器的应用,将样品集成在还原氧化石墨烯上,并将其整合到简单且廉价的玻碳电极(GCE)中,而无需使用任何聚乙烯吡咯烷酮(PVP)或 Nafion。为了进行循环伏安实验,在 PBS 溶液(pH = 7)中,在 ±1.5 电压范围内和 50 mV s 扫描速率下,对所有三个生物传感器进行了测量。通过合成复合材料对葡萄糖的识别是其高效率的明显标志。根据计时安培图,BM-2DDA/rGO/GCE 生物传感器的最佳灵敏度为 3050 μA L mmol cm,线性范围为 0.02-0.14 mmol L,检测限(LOD)为 0.004 mmol L,信号/噪声比为 3,其快速的电流响应时间小于 5 s。该生物传感器表现出令人印象深刻的选择性、重复性和重现性结果,并且在 8 周后仍能保持 98.5%的高稳定性。此外,它在 50 分钟后表现出了更长的稳定性。

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