Department of Chemistry, Sharif University of Technology, Tehran, 11155-9516, Iran.
Department of Chemistry, Sharif University of Technology, Tehran, 11155-9516, Iran.
Talanta. 2020 Apr 1;210:120696. doi: 10.1016/j.talanta.2019.120696. Epub 2019 Dec 27.
In this study, for the first time, we reported a fast and facile three-step in situ strategy for direct controllable growth of the Co(BTC) MOFs thin films on the GCE, through the rapid conversion of the electrodeposited Co(OH) nano-flakes on rGO/GCE, to crystalline rectangular bar-shape structures of MOFs. X-ray diffraction spectroscopy, Fourier transform infrared spectroscopy, field emission scanning electron microscopy, energy dispersive X-ray spectroscopy and elemental mapping analysis used to the structural and morphological characterization of the well-synthesized MOFs. The as-prepared Co(BTC) MOFs were used to construct a non-enzymatic sensing platform for determining the glucose in alkaline solution. The designed electrode demonstrated two wide linear dynamic range of 1 μM - 0.33 mM and 0.33 mM-1.38 mM with high sensitivity of 1792 μA mM cm and 1002 μA mM cm, respectively, good repeatability and reproducibility, high selectivity against interference species and good poisoning resistance against chloride ions and a low detection limit of 0.33 μM (S/N = 3). Finally, the application of the proposed sensor for the determination of glucose in the human blood serum samples was investigated and results showed excellent recoveries, which confirmed that the fabricated sensor can act as a reliable and sensitive platform for biological and clinical samples analysis.
在这项研究中,我们首次报道了一种快速简便的三步原位策略,通过快速转化在 rGO/GCE 上电沉积的 Co(OH)纳米薄片,直接可控地在 GCE 上生长 Co(BTC)MOFs 薄膜,得到结晶的矩形棒状 MOFs 结构。X 射线衍射光谱、傅里叶变换红外光谱、场发射扫描电子显微镜、能谱和元素映射分析用于对合成的 MOFs 进行结构和形态表征。所制备的 Co(BTC)MOFs 被用于构建用于在碱性溶液中测定葡萄糖的非酶传感平台。设计的电极表现出两个宽线性动态范围,分别为 1 μM - 0.33 mM 和 0.33 mM-1.38 mM,具有高灵敏度 1792 μA mM cm 和 1002 μA mM cm,良好的重复性和重现性,对干扰物质具有高选择性,对氯离子具有良好的抗中毒性,检测限低至 0.33 μM(S/N = 3)。最后,研究了该传感器在人血清样品中葡萄糖测定的应用,结果表明回收率良好,证实了所制备的传感器可以作为生物和临床样品分析的可靠和灵敏平台。
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