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基于氨基酸功能化石墨烯纳米片插层 Ni-MOF 的电催化剂用于测定内分泌干扰物双酚 A。

Electrocatalyst based on Ni-MOF intercalated with amino acid-functionalized graphene nanoplatelets for the determination of endocrine disruptor bisphenol A.

机构信息

Institute of Biochemical and Biomedical Engineering, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei, 106, Taiwan.

Institute of Biochemical and Biomedical Engineering, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei, 106, Taiwan.

出版信息

Anal Chim Acta. 2021 Mar 15;1150:338228. doi: 10.1016/j.aca.2021.338228. Epub 2021 Jan 22.

Abstract

In this study, controlled growth of Ni-MOF was decorated in amino acid-functionalized graphene nanoplatelets (FxGnP) by a solvothermal approach. The synthesized nanocomposite was characterized by various spectral, microscopic, and electrochemical techniques. FE-SEM and TEM image results exhibited the sheet-like structure of FxGnP and spherical-like Ni-MOF with an average size of 5.6 μm. Appreciably, the size of Ni-MOF was reduced to ∼2.3 μm while introducing the FxGnP. The presence of a large number of hydroxyl and epoxy functional groups of FxGnP acts as a nucleation center and restricted the uncontrolled growth of Ni-MOF. The FxGnP-Ni-MOF composite was modified on GCE and then utilized for the oxidation of bisphenol A (BPA). The nanocomposite material showed a sharp peak at +0.38 V vs. Ag/AgCl (saturated NaCl) with a stable response for BPA due to their less particle size with high electroactive surface area and higher electrical conductance, whereas bare GCE failed to the stable determination of BPA. The developed assay for determination of BPA exhibited a wide linear range from 2 × 10 M to 10 × 10 M, LOD 0.184 × 10 M and sensitivity of 247.65 μA mM cm. The FxGnP-Ni-MOF/GCE showed good stability and reproducibility against BPA. Finally, the present electrocatalyst was effectively utilized for the quantitative determination of BPA in water samples and obtained results were validated with HPLC method.

摘要

在这项研究中,通过溶剂热法在氨基酸功能化石墨烯纳米片(FxGnP)上控制生长 Ni-MOF。通过各种光谱、显微镜和电化学技术对合成的纳米复合材料进行了表征。FE-SEM 和 TEM 图像结果表明 FxGnP 具有片状结构,Ni-MOF 呈球形,平均尺寸为 5.6μm。引人注目的是,在引入 FxGnP 的同时,Ni-MOF 的尺寸减小到约 2.3μm。FxGnP 大量的羟基和环氧官能团作为成核中心,限制了 Ni-MOF 的无控制生长。将 FxGnP-Ni-MOF 复合材料修饰在 GCE 上,然后用于双酚 A(BPA)的氧化。由于其粒径较小、具有高的电活性表面积和更高的电导率,纳米复合材料在 Ag/AgCl(饱和 NaCl)相对于+0.38 V 时表现出尖锐的峰,对 BPA 具有稳定的响应,而裸 GCE 则无法稳定地测定 BPA。用于测定 BPA 的开发方法表现出从 2×10^-6 M 到 10×10^-6 M 的宽线性范围、0.184×10^-6 M 的 LOD 和 247.65 μA·mM^-1·cm^-2 的灵敏度。FxGnP-Ni-MOF/GCE 对 BPA 表现出良好的稳定性和重现性。最后,该电催化剂有效地用于水样中 BPA 的定量测定,并与 HPLC 法验证了结果。

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