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使用电生成纳米纹理金组装体对砷进行高灵敏度和高选择性检测。

Highly Sensitive and Selective Detection of Arsenic Using Electrogenerated Nanotextured Gold Assemblage.

作者信息

Babar Noor-Ul-Ain, Joya Khurram Saleem, Tayyab Muhammad Arsalan, Ashiq Muhammad Naeem, Sohail Manzar

机构信息

Department of Chemistry, University of Engineering and Technology (UET), G.T Road, Lahore 54890, Pakistan.

Institute of Chemical Sciences, Bahauddin Zakariya University (BZU), Bosan Road, Multan 60000, Punjab, Pakistan.

出版信息

ACS Omega. 2019 Aug 14;4(9):13645-13657. doi: 10.1021/acsomega.9b00807. eCollection 2019 Aug 27.

Abstract

Arsenic is considered as a toxic heavy metal which is highly detrimental to ecological systems, and long-term exposure to it is highly dangerous to life as it can cause serious health effects. Timely detection of traces of active arsenic (As) is very crucial, and the development of simple, cost-effective methods is imperative to address the presence of arsenic in water and food chain. Herein, we present an extensive study on chemical-free electrogenerated nanotextured gold assemblage for the detection of ultralow levels of As in water up to 0.08 ppb concentration. The gold nanotextured electrode (Au/GNE) is developed on simple Au foil via electrochemical oxidation-reduction sweeps in a metal-ion-free electrolyte solution. The ultrafine nanoscale morphological attributes of Au/GNE substrate are studied by scanning electron microscopy. Square wave anodic stripping voltammetry (ASV) response for different concentrations of arsenites is determined and directly correlated with As detection regarding the type of electrolyte solution, deposition potential, and deposition time. The average of three standard curves are linear from 0.1 ppb up to 9 ppb ( = 15) with a linear regression coefficient = 0.9932. Under optimized conditions, a superior sensitivity of 39.54 μA ppb cm is observed with a lower detection limit of 0.1 ppb (1.3 nM) (based on the visual analysis of calibration curve) and 0.08 ppb (1.06 nM) (based on the standard deviation of linear regression). Furthermore, the electrochemical Au/GNE is also applicable for arsenic detection in a complex system containing Cu, Ni, Fe, Pb, Hg, and other ions for the selective and sensitive analysis. Au/GNE substrate also possesses remarkable reproducibility and high stability for arsenic detection during repeated analysis and thus can be employed for prolonged applications and reiterating analyses. This electrochemically generated nanotextured electrode is also applicable for As detection and analysis in a real water sample under optimized conditions. Therefore, fabrication conditions and analytical and electroanalytical performances justify that because of its low cost, easy preparation method and assembly, high reproducibility, and robustness, nanosensor Au/GNE can be scaled up for further applications.

摘要

砷被认为是一种有毒重金属,对生态系统危害极大,长期接触砷对生命非常危险,因为它会导致严重的健康问题。及时检测痕量活性砷(As)至关重要,开发简单、经济高效的方法来解决水和食物链中砷的存在问题势在必行。在此,我们对无化学试剂的电生成纳米纹理金组件进行了广泛研究,用于检测水中浓度高达0.08 ppb的超低水平As。通过在无金属离子的电解质溶液中进行电化学氧化还原扫描,在简单的金箔上制备了金纳米纹理电极(Au/GNE)。通过扫描电子显微镜研究了Au/GNE基底的超细纳米级形态特征。测定了不同浓度亚砷酸盐的方波阳极溶出伏安法(ASV)响应,并将其与关于电解质溶液类型、沉积电位和沉积时间的As检测直接相关联。三条标准曲线的平均值在0.1 ppb至9 ppb( = 15)范围内呈线性,线性回归系数 = 0.9932。在优化条件下,观察到优异的灵敏度为39.54 μA ppb cm,较低检测限为0.1 ppb(1.3 nM)(基于校准曲线的目视分析)和0.08 ppb(1.06 nM)(基于线性回归的标准偏差)。此外,电化学Au/GNE还适用于在含有Cu、Ni、Fe、Pb、Hg和其他离子的复杂系统中进行砷的检测,以实现选择性和灵敏分析。Au/GNE基底在重复分析过程中对砷检测也具有显著的重现性和高稳定性,因此可用于长期应用和反复分析。这种电化学生成的纳米纹理电极在优化条件下也适用于实际水样中的As检测和分析。因此,制备条件以及分析和电分析性能证明,由于其低成本、易于制备方法和组装、高重现性和稳健性,纳米传感器Au/GNE可扩大规模用于进一步应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd18/6714603/53efa0bfd477/ao9b00807_0010.jpg

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