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The porous chitosan–sodium dodecyl sulfate–carbon nanotube nanocomposite: direct electrochemistry and electrocatalysis of hemoglobin

机译:多孔壳聚糖-十二烷基硫酸钠-碳纳米管纳米复合材料:血红蛋白的直接电化学和电催化

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A novel biosensor is developed based on immobilization of hemoglobin (Hb) on chitosan–sodium dodecyl sulfate–carbon nanotube composite modified glassy carbon electrode (Hb/CS–SDS–CNT/GCE). The surface morphologies of the modified electrode were characterized by SEM, and direct electrochemistry of Hb on Hb/CS–SDS–CNT/GCE was investigated by cyclic voltammetry (CV) and electron impedance spectroscopy (EIS). UV-vis spectroscopic results indicated that Hb molecules in the composite film retained the native structure. The results indicate that Hb immobilized on the surface of the modified electrode could keep its bioactivity, exhibiting a surface-controlled electrochemical process. The kinetic parameters for the electrode reaction, such as the formal potential (E°), the electron transfer rate constant (ks), the apparent coverage (Γ), and Michaelis–Menten constant (Km) are evaluated. Moreover, the immobilized Hb also displayed its good electrocatalytic activity for the reduction of hydrogen peroxide with a low detection limit of 4.2 μM and good stability and reproducibility. The results demonstrate that porous CS–SDS–CNT composite can improve the Hb loading with retention of its bioactivity, and greatly promote the direct electron transfer, which can be attributed to its high specific surface area, uniform ordered porous structure, suitable pore size and biocompatibility...
机译:基于血红蛋白(Hb)固定在壳聚糖-十二烷基硫酸钠-碳纳米管复合修饰玻碳电极(Hb / CS-SDS-CNT / GCE)上的新型生物传感器。用SEM表征了修饰电极的表面形貌,并通过循环伏安法(CV)和电子阻抗谱(EIS)研究了Hb在Hb / CS–SDS–CNT / GCE上的直接电化学。紫外可见光谱结果表明,复合膜中的血红蛋白分子保留了天然结构。结果表明,固定在修饰电极表面的血红蛋白可以保持其生物活性,表现出表面受控的电化学过程。评估了电极反应的动力学参数,例如形式电势(E°),电子传递速率常数(ks),表观覆盖率(Γ)和米氏-曼登常数(Km)。此外,固定化的Hb还表现出了良好的还原过氧化氢的电催化活性,检出限低至4.2μM,稳定性和重现性良好。结果表明,多孔CS–SDS–CNT复合材料可以保留其生物活性,从而改善Hb负载,并极大地促进了直接电子转移,这可以归因于其高比表面积,均匀有序的多孔结构,合适的孔径和生物相容性...

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