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氧化钆纳米棒嵌入石墨烯气凝胶的设计与构建:在采后杀菌剂电化学检测中的潜在应用。

Design and Construction of the Gadolinium Oxide Nanorod-Embedded Graphene Aerogel: A Potential Application for Electrochemical Detection of Postharvest Fungicide.

机构信息

Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 8;12(14):16216-16226. doi: 10.1021/acsami.9b20224. Epub 2020 Mar 30.

DOI:10.1021/acsami.9b20224
PMID:32149501
Abstract

The rapid development of electrochemical sensors holds great promise to serve as next generation point-of-care safety devices. However, the practical performances of electrochemical sensors are cruelly limited by stability, selectivity, and sensitivity. These issues have been well addressed by introducing rational designs into the modified electrode for achieving the required performances. Herein, we demonstrate the gadolinium oxide nanorods embedded on the graphene aerogel (GdO NRs/GA) for a highly selective electrochemical detection of carbendazim (CDM). The GdO NRs/GA nanocomposite was characterized using X-ray diffraction, Raman spectroscopy, X-ray photoelectron spectroscopy, field emission gun scanning electron microscopy, transmission electron microscopy with elemental mapping, and energy-dispersive spectrometry. The GdO NRs/GA-modified electrode shows a much improved electrochemical performance compared to other electrodes. Interestingly, the GdO NRs are strongly anchored in the GA matrix, which provides a more sufficient pathway for the rapid electron and ion transportation. On the basis of these findings, our proposed sensor achieves a wide detection range from 0.01 to 75 μM with a correlation coefficient of 0.996 and a low detection limit of 3.0 nM. Most markedly, the real-time monitoring of the proposed electrochemical sensor was proved by the successful determination of CDM in environmental samples. Our research work has opened a novel way to the rationale for the construction of highly efficient practical electrochemical sensors.

摘要

电化学传感器的快速发展有望成为下一代即时医疗安全设备。然而,电化学传感器的实际性能受到稳定性、选择性和灵敏度的严重限制。通过对修饰电极进行合理设计,可以解决这些问题,从而实现所需的性能。在此,我们展示了嵌入在石墨烯气凝胶中的氧化钆纳米棒(GdO NRs/GA),用于高度选择性电化学检测多菌灵(CDM)。使用 X 射线衍射、拉曼光谱、X 射线光电子能谱、场发射枪扫描电子显微镜、带有元素映射的透射电子显微镜和能量色散光谱对 GdO NRs/GA 纳米复合材料进行了表征。与其他电极相比,GdO NRs/GA 修饰电极表现出更好的电化学性能。有趣的是,GdO NRs 被强烈地锚定在 GA 基质中,这为快速电子和离子传输提供了更充足的途径。基于这些发现,我们提出的传感器实现了从 0.01 到 75 μM 的宽检测范围,相关系数为 0.996,检测限低至 3.0 nM。最显著的是,通过成功测定环境样品中的 CDM,证明了所提出的电化学传感器的实时监测是可行的。我们的研究工作为构建高效实用的电化学传感器开辟了一条新途径。

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