Savitri D, Mitra C K
Department of Biochemistry, School of Life Sciences, University of Hyderabad, India.
Bioelectrochem Bioenerg. 1999 Feb;48(1):163-9. doi: 10.1016/s0302-4598(98)00227-x.
Impedance and capacitance studies have been performed with covalently coupled Glucose oxidase (GOD) enzyme, covalently coupled flavin adenine dinucleotide (FAD), reconstituted GOD enzyme and blank carbon paste electrodes to study the changes in the electrochemical interfacial properties. Impedance studies were performed using a low frequency impedance technique and the electrochemical surface capacitance was measured by a pulse technique. We have attempted to fit the experimental values to an equivalent circuit model. The Randles' cell circuit with Warburg impedance modeled well the experimental values and the behavior of the enzyme electrodes. The individual components of the model were calculated and the parameters were explained. The blank paste electrode showed a constant phase element behavior.
已使用共价偶联的葡萄糖氧化酶(GOD)、共价偶联的黄素腺嘌呤二核苷酸(FAD)、重组GOD酶和空白碳糊电极进行了阻抗和电容研究,以研究电化学界面性质的变化。使用低频阻抗技术进行阻抗研究,并通过脉冲技术测量电化学表面电容。我们试图将实验值拟合到等效电路模型。具有Warburg阻抗的Randles电池电路很好地模拟了实验值和酶电极的行为。计算了模型的各个组件并解释了参数。空白糊电极表现出恒相元件行为。