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Smart Nanocomposites of Cu-Hemin Metal-Organic Frameworks for Electrochemical Glucose Biosensing

机译:Cu-Hemin金属有机骨架的智能纳米复合材料用于电化学葡萄糖生物传感

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摘要

Herein, a smart porous material, Cu-hemin metal-organic-frameworks (Cu-hemin MOFs), was synthesized via assembling of Cu2+ with hemin to load glucose oxidase (GOD) for electrochemical glucose biosensing for the first time. The formation of the Cu-hemin MOFs was verified by scanning electron microscopy, X-ray powder diffraction, Fourier transform infrared spectroscopy, N2 adsorption/desorption isotherms, UV-vis absorption spectroscopy, fluorescence spectroscopy, thermal analysis and electrochemical techniques. The results indicated that the Cu-hemin MOFs showed a ball-flower-like hollow cage structure with a large specific surface area and a large number of mesopores. A large number of GOD molecules could be successfully loaded in the pores of Cu-hemin MOFs to keep their bioactivity just like in a solution. The GOD/Cu-hemin MOFs exhibited both good performance toward oxygen reduction reaction via Cu-hemin MOFs and catalytic oxidation of glucose via GOD, superior to other GOD/MOFs and GODanomaterials. Accordingly, the performance of GOD/Cu-hemin MOFs-based electrochemical glucose sensor was enhanced greatly, showing a wide linear range from 9.10 μM to 36.0 mM and a low detection limit of 2.73 μM. Moreover, the sensor showed satisfactory results in detection of glucose in human serum. This work provides a practical design of new electrochemical sensing platform based on MOFs and biomolecules.
机译:本文中,通过将Cu (2 +)与血红素组装在一起,以负载葡萄糖氧化酶(GOD),合成了一种智能多孔材料Cu-hemin金属有机骨架(Cu-hemin MOFs),用于电化学葡萄糖生物传感。首次。通过扫描电子显微镜,X射线粉末衍射,傅立叶变换红外光谱,N2吸附/解吸等温线,UV-Vis吸收光谱,荧光光谱,热分析和电化学技术验证了Cu-hemin MOF的形成。结果表明,Cu-hemin MOFs具有球形花状空心笼形结构,具有大的比表面积和大量的中孔。大量的GOD分子可以成功地加载到Cu-hemin MOF的孔中,以保持其生物活性,就像在溶液中一样。与其他GOD / MOF和GOD /纳米材料相比,GOD / Cu-hemin MOF通过Cu-hemin MOF对氧还原反应表现出良好的性能,并通过GOD对葡萄糖进行催化氧化。因此,基于GOD / Cu-hemin MOFs的电化学葡萄糖传感器的性能大大提高,线性范围从9.10μM到36.0μmM,检测限低至2.73μM。此外,该传感器在检测人血清中的葡萄糖方面显示出令人满意的结果。这项工作提供了基于MOF和生物分子的新型电化学传感平台的实用设计。

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